US2018106809A1PendingUtilityA1

Antibodies and immunoconjugates and uses therefor

Assignee: GENENTECH INCPriority: Oct 27, 2006Filed: Dec 21, 2017Published: Apr 19, 2018
Est. expiryOct 27, 2026(~0.2 yrs left)· nominal 20-yr term from priority
A61P 35/00G01N 33/57555C07K 2317/515C07K 16/3069C07K 16/30C07K 2317/567A61K 51/1045C07K 2317/54A61K 47/6851C07K 2317/92C07K 16/40A61K 49/0002C07K 17/00A61K 51/1072A61K 2039/505A61K 49/0058A61K 39/39558C07K 2317/565C07K 2317/24A61K 47/6869C07K 2317/55C07K 2317/31A61K 47/6871C07K 2317/622A61K 38/05A61K 45/06G01N 33/575G01N 33/57434C12N 15/11A61K 39/395
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Claims

Abstract

Anti-STEAP-1 antibodies and immunoconjugates thereof are provided. Methods of using anti-STEAP-1 antibodies and immunoconjugates thereof are provided.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An antibody that binds to STEAP-1, wherein the antibody comprises at least one, two, or three heavy chain (HC) hypervariable regions (HVRs) selected from:
 (1) an HVR-H1 comprising the amino acid sequence of SEQ ID NO:14;   (2) an HVR-H2 comprising the amino acid sequence of SEQ ID NO:15; and   (3) an HVR-H3 comprising the amino acid sequence of SEQ ID NO:16.   
     
     
         2 . The antibody of  claim 1 , further comprising at least one, two, or three HC framework regions (FRs) selected from:
 (1) an HC-FR1 comprising the amino acid sequence of SEQ ID NO:25   (2) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:22;   (3) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:75;   (4) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:76;   (5) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:23;   (6) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:78;   (7) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:79; and   (8) an HC-FR4 comprising the amino acid sequence of SEQ ID NO:24.   
     
     
         3 . The antibody of  claim 1 , further comprising a light chain (LC) of SEQ ID NO:6. 
     
     
         4 . The antibody of  claim 2 , further comprising a light chain (LC) of SEQ ID NO:6. 
     
     
         5 . The antibody of  claim 1 , wherein the HC has at least 90% sequence identity to SEQ ID NOs:9 or 10. 
     
     
         6 . The antibody of  claim 2 , wherein the HC has at least 90% sequence identity to SEQ ID NOs:9 or 10. 
     
     
         7 . The antibody of  claim 1 , wherein the antibody is humanized. 
     
     
         8 . The antibody of  claim 2 , wherein the antibody is humanized. 
     
     
         9 . The antibody of  claim 1 , wherein the STEAP-1 is mammalian STEAP-1. 
     
     
         10 . The antibody of  claim 9 , wherein the STEAP-1 is selected from rodent STEAP-1 and primate STEAP-1. 
     
     
         11 . The antibody of  claim 31 , wherein the STEAP-1 is human STEAP-1. 
     
     
         12 . A polynucleotide encoding a HC comprising at least one, two, or three HC-HVRs selected from:
 (1) an HVR-H1 comprising the amino acid sequence of SEQ ID NO:14;   (2) an HVR-H2 comprising the amino acid sequence of SEQ ID NO:15; and   (3) an HVR-H3 comprising the amino acid sequence of SEQ ID NO:16.   
     
     
         13 . A polynucleotide of  claim 12  comprising at least one, two, three, or four HC-FRs selected from:
 (1) an HC-FR1 comprising the amino acid sequence of SEQ ID NO:25 
 (2) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:22; 
 (3) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:75; 
 (4) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:76; 
 (5) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:23; 
 (6) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:78; 
 (7) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:79; and 
 (8) an HC-FR4 comprising the amino acid sequence of SEQ ID NO:24. 
 
     
     
         14 . A vector comprising the polynucleotide of  claim 12 . 
     
     
         15 . A host cell comprising the vector of  claim 12 . 
     
     
         16 . The host cell of  claim 15 , wherein the host cell is a bacteria, yeast, insect, or eukaryotic cell. 
     
     
         17 . The host cell of  claim 42 , wherein the host cell is a CHO cell. 
     
     
         18 . A method of making an anti-STEAP-1 antibody, wherein the method comprises a) culturing the host cell of  claim 15  under conditions suitable for expression of the polynucleotide encoding the antibody, and b) isolating the antibody. 
     
     
         19 . The antibody of  claim 1 , wherein the STEAP-1 is expressed on the surface of a cell. 
     
     
         20 . The antibody of  claim 19 , wherein the cell is a prostate, lung, colon, bladder, or ovary cell or a Ewing's sarcoma cell. 
     
     
         21 . The antibody of  claim 20 , wherein the cell is associated with a proliferative disorder. 
     
     
         22 . The antibody of  claim 21 , wherein the disorder is cancer. 
     
     
         23 . The antibody of  claim 22 , wherein the cancer is metastasis. 
     
     
         24 . The antibody of  claim 1 , wherein the antibody is a monoclonal antibody. 
     
     
         25 . The antibody of  claim 24 , wherein the antibody is an antibody fragment selected from a Fab, Fab′-SH, Fv, scFv, or (Fab′) 2  fragment. 
     
     
         26 . The antibody of  claim 60 , wherein the antibody is humanized. 
     
     
         27 . The antibody of  claim 60 , wherein the antibody is human. 
     
     
         28 . A method of detecting the presence of STEAP-1 in a biological sample, the method comprising contacting the biological sample with an antibody of  claim 1  under conditions permissive for binding of the antibody to STEAP-1, and detecting whether a complex is formed between the antibody and STEAP-1 
     
     
         29 . The method of  claim 28 , wherein the biological sample is from a patient suspected of having a prostate, lung, colon, bladder, ovarian cell or Ewing's sarcoma cell proliferative disorder. 
     
     
         30 . An immunoconjugate comprising an antibody of  claim 1  covalently attached to a cytotoxic agent. 
     
     
         31 . The immunoconjugate of  claim 30 , wherein the cytotoxic agent is selected from a toxin, a chemotherapeutic agent, a drug moiety, an antibiotic, a radioactive isotope, and a nucleolytic enzyme. 
     
     
         32 . The immunoconjugate of  claim 31 , the immunoconjugate having the formula Ab-(L-D)p, wherein:
 (a) Ab is the antibody of  claim 1 ;   (b) L is a linker;   (c) D is a drug moiety.   
     
     
         33 . The immunoconjugate of  claim 32 , wherein L is selected from 6-maleimidocaproyl (MC), maleimidopropanoyl (MP), valine-citrulline (val-cit), alanine-phenylalanine (ala-phe), p-aminobenzyloxycarbonyl (PAB), N-Succinimidyl 4-(2-pyridylthio) pentanoate (SPP), N-succinimidyl 4-(N-maleimidomethyl) cyclohexane-1 carboxylate (SMCC), N-Succinimidyl (4-iodo-acetyl) aminobenzoate (SIAB), and 6-maleimidocaproyl-valine-citrulline-p-aminobenyloxycarbonyl (MC-vc-PAB). 
     
     
         34 . The immunoconjugate of  claim 33 , wherein D is selected from an auristatin and dolostantin. 
     
     
         35 . The immunoconjugate of  claim 34 , wherein D is a drug moiety of formula D E  or D F : 
       
         
           
           
               
               
           
         
         and wherein R 2  and R 6  are each methyl, R 3  and R 4  are each isopropyl, R 7  is sec-butyl, each R 8  is independently selected from CH 3 , O—CH 3 , OH, and H; R 9  is H; R 10  is aryl; Z is —O— or —NH—; R 11  is H, C 1 -C 8  alkyl, or —(CH 2 ) 2 —O—(CH 2 ) 2 —O—(CH 2 ) 2 —O—CH 3 ; and R 18  is —C(R 8 ) 2 —C(R 8 ) 2 -aryl; and
 (d) p ranges from about 1 to 8. 
 
       
     
     
         36 . The immunoconjugate of  claim 32 , having in vitro or in vivo cell killing activity. 
     
     
         37 . The immunoconjugate of  claim 32 , wherein the linker is attached to the antibody through a thiol group on the antibody. 
     
     
         38 . The immunoconjugate of  claim 32 , wherein the linker is cleavable by a protease. 
     
     
         39 . The immunoconjugate of  claim 32 , wherein the linker comprises a val-cit dipeptide. 
     
     
         40 . The immunoconjugate of  claim 32 , wherein the linker comprises a p-aminobenzyl unit. 
     
     
         41 . The immunoconjugate of  claim 32 , wherein the linker comprises 6-maleimidocaproyl. 
     
     
         42 . The immunoconjugate of  claim 32 , wherein the drug is selected from MMAE and MMAF. 
     
     
         43 . The immunoconjugate of  claim 42 , wherein the drug is MMAE. 
     
     
         44 . The immunoconjugate of  claim 42 , wherein the drug is MMAF. 
     
     
         45 . The immunoconjugate of  claim 32 , wherein the immunoconjugate has the formula Ab-(L-MMAE)p,
 wherein L is a linker and p ranges from 2 to 5.   
     
     
         46 . The immunoconjugate of  claim 45 , wherein L comprises val-cit. 
     
     
         47 . The immunoconjugate of  claim 45 , wherein L comprises MC. 
     
     
         48 . The immunoconjugate of  claim 45 , wherein L comprises PAB. 
     
     
         49 . The immunoconjugate of  claim 45 , wherein L comprises MC-vc-PAB. 
     
     
         50 . The immunoconjugate of  claim 45 , wherein the immunoconjugate has the formula Ab-(L-MMAF)p,
 wherein L is a linker and p ranges from 2 to 5.   
     
     
         51 . The immunoconjugate of  claim 50 , wherein L comprises val-cit. 
     
     
         52 . The immunoconjugate of  claim 50 , wherein L comprises MC. 
     
     
         53 . The immunoconjugate of  claim 50 , wherein L comprises PAB. 
     
     
         54 . The immunoconjugate of  claim 50 , wherein L comprises MC-vc-PAB. 
     
     
         55 . The immunoconjugate of  claim 50 , wherein the immunoconjugate has the formula Ab-(L-MMAF)p,
 wherein L is a linker and p ranges from 2 to 5.   
     
     
         56 . The immunoconjugate of  claim 32 , wherein D is a maytansinoid. 
     
     
         57 . The immunoconjugate of  claim 56 , wherein D is selected from DM1, DM3, and DM4. 
     
     
         58 . The immunoconjugate of  claim 56 , having in vitro or in vivo cell killing activity. 
     
     
         59 . The immunoconjugate of  claim 56 , wherein the linker is attached to the antibody through a thiol group on the antibody. 
     
     
         60 . The immunoconjugate of  claim 56 , wherein the linker, L, is selected from N-Succinimidyl 4-(2-pyridylthio) pentanoate (SPP), N-succinimidyl 4-(N-maleimidomethyl) cyclohexane-1 carboxylate (SMCC), and N-Succinimidyl (4-iodo-acetyl) aminobenzoate (SIAB). 
     
     
         61 . The immunoconjugate of  claim 60 , wherein the drug is DM1. 
     
     
         62 . The immunoconjugate of  claim 62 , wherein L comprises a SPP. 
     
     
         63 . The immunoconjugate of  claim 61 , wherein L comprises SMCC. 
     
     
         64 . The immunoconjugate of  claim 61 , wherein p is from 2-6. 
     
     
         65 . The immunoconjugate of  claim 64 , wherein p is from 3-5. 
     
     
         66 . A pharmaceutical composition comprising the immunoconjugate of  claim 32  and a pharmaceutically acceptable carrier. 
     
     
         67 . A method of treating a cell proliferative disorder comprising administering to an individual an effective amount of the pharmaceutical composition of  claim 66 . 
     
     
         68 . The method of  claim 67 , wherein the cell proliferative disorder is selected from prostate, lung, colon, bladder, ovary, and Ewing's sarcoma cell proliferative disorder. 
     
     
         69 . A method of inhibiting prostate, lung, colon, bladder, ovary, Ewing's sarcoma cell proliferation comprising exposing a cell to an immunoconjugate of  claim 32  under conditions permissive for binding of the immunoconjugate to STEAP-1. 
     
     
         70 . The method of  claim 69 , wherein the prostate, lung, colon, bladder, or ovary cell or Ewing's sarcoma cell is a xenograft. 
     
     
         71 . The method of  claim 69 , wherein the exposing takes place in vitro. 
     
     
         72 . The method of  claim 69 , wherein the exposing takes place in vivo. 
     
     
         73 . The antibody of  claim 1 , wherein the antibody is a cysteine engineered antibody comprising one or more free cysteine amino acids having a thiol reactivity value in the range of 0.6 to 1.0, wherein the cysteine engineered antibody is prepared by a process comprising replacing one or more amino acid residues of a parent antibody by cysteine. 
     
     
         74 . The cysteine engineered antibody of  claim 73 , wherein the cysteine engineered antibody is more reactive than the parent antibody with a thio-reactive reagent. 
     
     
         75 . The cysteine engineered antibody of  claim 73  wherein the process further comprises determining the thiol reactivity of the cysteine engineered antibody by reacting the cysteine engineered antibody with a thiol-reactive reagent;
 wherein the cysteine engineered antibody is more reactive than the parent antibody with the thiol-reactive reagent. 
 
     
     
         76 . The cysteine engineered antibody of  claim 73  wherein the one or more free cysteine amino acid residues are located in a light chain. 
     
     
         77 . The cystein engineered antibody of  claim 73  wherein the one or more free cysteine amino acid residues are located in a heavy chain. 
     
     
         78 . The cysteine engineered antibody of  claim 73 , wherein the antibody is an immunoconjugate comprising the cysteine engineered antibody covalently attached to a cytotoxic agent. 
     
     
         79 . The cysteine engineered antibody of  claim 78 , wherein the cytotoxic agent is selected fom a toxin, a chemotherapeutic agent, a drug moiety, an antibiotic, a radioactive isotope, and a nucleolytic enzyme. 
     
     
         80 . The cysteine engineered antibody of  claim 73  wherein the antibody is covalently attached to a capture label, a detection label, or a solid support. 
     
     
         81 . The cysteine engineered antibody of  claim 80  wherein the antibody is covalently attached to a biotin capture label. 
     
     
         82 . The cysteine engineered antibody of  claim 80  wherein the antibody is covalently attached to a fluorescent dye detection label. 
     
     
         83 . The cysteine engineered antibody of  claim 82  wherein the fluorescent dye is selected from a fluorescein type, a rhodamine type, dansyl, Lissamine, a cyanine, a phycoerythrin, Texas Red, and an analog thereof. 
     
     
         84 . The cysteine engineered antibody of  claim 80  wherein the antibody is covalently attached to a radionuclide detection label selected from  3 H,  11 C,  14 C,  18 F,  32 P,  35 S,  64 Cu,  68 Ga,  86 Y,  99 Tc,  111 In,  123 I,  124 I,  125 I,  131 I,  133 Xe,  177 Lu,  211 At, and  213 Bi. 
     
     
         85 . The cysteine engineered antibody of  claim 80  wherein the antibody is covalently attached to a chelating ligand that chelates a detectable label. 
     
     
         86 . The cysteine engineered antibody of  claim 80  wherein the chelating ligand is selected from DOTA, DOTP, DOTMA, DTPA and TETA. 
     
     
         87 . The immunoconjugate of  claim 32 , wherein the linker is attached to the antibody through a thiol group on the antibody. 
     
     
         88 . The antibody of  claim 1  comprising an albumin binding peptide. 
     
     
         89 . The antibody of  claim 88 , wherein the albumin binding peptide is selected from SEQ ID NOs:80-84. 
     
     
         90 . The method of  claim 67 , further comprising administering to the individual an effective amount of at least one additional therapeutic compound selected from a chemotherapeutic acid, a radionuclide, CHOP, a naked antibody, antibody drug conjugate, and an immunoconjugate. 
     
     
         91 . The method of  claim 90 , wherein the antibody, ADC, and immunoconjugate bind to an antigen expressed in proliferating cells. 
     
     
         92 . The method of  claim 91 , wherein the proliferating cells are from prostate, lung, colon, bladder, ovary, or Ewing's sarcoma. 
     
     
         93 . A cysteine engineered anti-STEAP-1 antibody comprising one or more free cysteine amino acids wherein the cysteine engineered anti-STEAP-1 antibody binds to a STEAP-1 polypeptide and is prepared by a process comprising replacing one or more amino acid residues of a parent anti-STEAP-1 antibody by cysteine wherein the parent antibody comprises at least one HVR sequence selected from:
 (a) an HVR-L1 sequence of SEQ ID NO:11;   (b) an HVR-L2 sequence of SEQ ID NO:12;   (c) an HVR-L3 sequence of SEQ ID NO:11;   (d) an HVR-H1 sequence of SEQ ID NO:14;   (e) an HVR-H2 sequence of SEQ ID NO:15; and   (f) an HVR-H3 sequence of SEQ ID NO:16.   
     
     
         94 . The cysteine engineered antibody of  claim 1  wherein the parent anti-STEAP-1 antibody comprises a variable heavy chain sequence selected from any one of SEQ ID NOS:9-10. 
     
     
         95 . The cysteine engineered antibody of  claim 1  wherein the parent anti-STEAP-1 antibody comprises a variable light chain sequence of SEQ ID NO:6. 
     
     
         96 . The cysteine engineered antibody of  claim 1  wherein the one or more free cysteine amino acid residues are located in a light chain. 
     
     
         97 . The cysteine engineered antibody of  claim 4  comprising one or more sequences selected from:
 (1) an HC-FR1 comprising the amino acid sequence of SEQ ID NO:25 
 (2) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:22; 
 (3) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:75; 
 (4) an HC-FR2 comprising the amino acid sequence of SEQ ID NO:76; 
 (5) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:23; 
 (6) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:78; 
 (7) an HC-FR3 comprising the amino acid sequence of SEQ ID NO:79; and 
 (8) an HC-FR4 comprising the amino acid sequence of SEQ ID NO:24. 
 
     
     
         98 . The cysteine engineered antibody of  claim 1  wherein the one or more free cysteine amino acid residues are located in a heavy chain. 
     
     
         99 . The cysteine engineered antibody of  claim 6  comprising one or more sequences selected from:
 (1) an LC-FR1 comprising the amino acid sequence of SEQ ID NO:17 
 (2) an LC-FR2 comprising the amino acid sequence of SEQ ID NO:18; 
 (3) an LC-FR3 comprising the amino acid sequence of SEQ ID NO:19; and 
 (4) an LC-FR4 comprising the amino acid sequence of SEQ ID NO:20. 
 
     
     
         100 . The cysteine engineered antibody of  claim 93  comprising a heavy chain sequence comprising SEQ ID NO:9. 
     
     
         101 . The cysteine engineered antibody of  claim 93  comprising a heavy chain sequence comprising SEQ ID NO:10. 
     
     
         102 . The cysteine engineered antibody of  claim 93  comprising a light chain sequence comprising SEQ ID NO:6. 
     
     
         103 . The cysteine engineered antibody of  claim 93  wherein the parent anti-STEAP-1 antibody is selected from a monoclonal antibody, a bispecific antibody, a chimeric antibody, a human antibody, and a humanized antibody. 
     
     
         104 . The cysteine engineered antibody of  claim 93  which is an antibody fragment. 
     
     
         105 . The cysteine engineered antibody of  claim 104  wherein the antibody fragment is a Fab fragment. 
     
     
         106 . The cysteine engineered antibody of  claim 93  which is selected from a chimeric antibody, a human antibody, or a humanized antibody. 
     
     
         107 . The cysteine engineered antibody of  claim 93  which is produced in bacteria. 
     
     
         108 . The cysteine engineered antibody of  claim 93  which is produced in CHO cells. 
     
     
         109 . A method of determining the presence of a STEAP-1 protein in a sample suspected of containing said protein, said method comprising exposing said sample to a cysteine engineered antibody of  claim 93  and determining binding of said antibody to said STEAP-1 protein in said sample, wherein binding of the antibody to said protein is indicative of the presence of said protein in said sample. 
     
     
         110 . The method of  claim 109  wherein said sample comprises a cell suspected of expressing said STEAP-1 protein. 
     
     
         111 . The method of  claim 109  wherein said cell is a prostate, lung, colon, bladder or ovary cancer cell, or a Ewing's sarcoma cell. 
     
     
         112 . The method of  claim 109  wherein the antibody is covalently attached to a label selected from a fluorescent dye, a radioisotope, biotin, or a metal-complexing ligand. 
     
     
         113 . A pharmaceutical formulation comprising the anti-STEAP-1 antibody of  claim 93 , and a pharmaceutically acceptable diluent, carrier or excipient. 
     
     
         114 . The cysteine engineered antibody of  claim 93  wherein the antibody is covalently attached to an auristatin drug moiety whereby an antibody drug conjugate is formed. 
     
     
         115 . The antibody-drug conjugate of  claim 114  comprising a cysteine engineered antibody (Ab), and an auristatin drug moiety (D) wherein the cysteine engineered antibody is attached through one or more free cysteine amino acids by a linker moiety (L) to D: the compound having Formula I:
   Ab-(L-D) p   I
 
 where p is 1, 2, 3, or 4. 
 
     
     
         116 . The antibody-drug conjugate compound of  claim 115  wherein p is 2. 
     
     
         117 . The antibody-drug conjugate compound of  claim 115  wherein L has the formula:
   -A a -W w —Y y —
 
 where: 
 A is a Stretcher unit covalently attached to a cysteine thiol of the cysteine engineered antibody (Ab); 
 a is 0 or 1; 
 each W is independently an Amino Acid unit; 
 w is an integer ranging from 0 to 12; 
 Y is a Spacer unit covalently attached to the drug moiety; and 
 y is 0, 1 or 2. 
 
     
     
         118 . The antibody-drug conjugate compound of  claim 117  having the formula: 
       
         
           
           
               
               
           
         
         where PAB is para-aminobenzylcarbamoyl, and R 17  is a divalent radical selected from (CH 2 ) r , C 3 -C 8  carbocyclyl, O—(CH 2 ) r , arylene, (CH 2 ) r -arylene, -arylene-(CH 2 ) r —, (CH 2 ) r —(C 3 -C 8  carbocyclyl), (C 3 -C 8  carbocyclyl)-(CH 2 ) r , C 3 -C 8  heterocyclyl, (CH 2 ) r —(C 3 -C 8  heterocyclyl), —(C 3 -C 8  heterocyclyl)-(CH 2 ) r —, —(CH 2 ) r C(O)NR b (CH 2 ) r —, —(CH 2 CH 2 O) r —, —(CH 2 CH 2 O) r —CH 2 —, —(CH 2 ) r C(O)NR b (CH 2 CH 2 O) r —, —(CH 2 ) r C(O)NR b (CH 2 CH 2 O) r —CH 2 —, —(CH 2 CH 2 O) r C(O)NR b (CH 2 CH 2 O) r —, —(CH 2 CH 2 O) r C(O)NR b (CH 2 CH 2 O) r —CH 2 —, and —(CH 2 CH 2 O) r C(O)NR b (CH) r —; where R b  is H, C 1 -C 6  alkyl, phenyl, or benzyl; and r is independently an integer ranging from 1 to 10. 
       
     
     
         119 . The antibody-drug conjugate compound of  claim 117  wherein W w  is valine-citrulline. 
     
     
         120 . The antibody-drug conjugate compound of  claim 117  wherein R 17  is (CH 2 ) 5  or (CH 2 ) 2 . 
     
     
         121 . The antibody-drug conjugate compound of  claim 117  having the formula: 
       
         
           
           
               
               
           
         
       
     
     
         122 . The antibody-drug conjugate compound of  claim 121  wherein R 17  is (CH 2 ) 5  or (CH 2 ) 2 . 
     
     
         123 . The antibody-drug conjugate compound of  claim 117  having the formula: 
       
         
           
           
               
               
           
         
       
     
     
         124 . The antibody-drug conjugate compound of  claim 115  wherein L is SMCC or BMPEO. 
     
     
         125 . The antibody-drug conjugate compound of  claim 115  wherein D is MMAE, having the structure: 
       
         
           
           
               
               
           
         
         where the wavy line indicates the attachment site to the linker L. 
       
     
     
         126 . The antibody-drug conjugate compound of  claim 115  wherein D is MMAF, having the structure: 
       
         
           
           
               
               
           
         
         where the wavy line indicates the attachment site to the linker L. 
       
     
     
         127 . The antibody-drug conjugate compound of  claim 114  wherein the parent anti-STEAP-1 antibody is selected from a monoclonal antibody, a bispecific antibody, a chimeric antibody, a human antibody, and a humanized antibody. 
     
     
         128 . The antibody-drug conjugate compound of  claim 114  wherein the parent anti-STEAP-1 antibody is an antibody fragment. 
     
     
         129 . The antibody-drug conjugate compound of  claim 128  wherein the antibody fragment is a Fab fragment. 
     
     
         130 . An antibody-drug conjugate compound selected from the structures: 
       
         
           
           
               
               
           
         
         wherein Val is valine; Cit is citrulline; p is 1, 2, 3, or 4; and Ab is a cysteine engineered anti-STEAP-1 antibody of  claim 93 . 
       
     
     
         131 . The antibody drug conjugate of  claim 114  wherein the auristatin is MMAE or MMAF. 
     
     
         132 . The antibody drug conjugate of  claim 115  wherein L is MC-val-cit-PAB or MC. 
     
     
         133 . The antibody drug conjugate of  claim 115  wherein L is SMCC, SPP, or BMPEO. 
     
     
         134 . An assay for detecting cancer cells comprising:
 (a) exposing cells to an antibody-drug conjugate-compound of  claim 114 ; and   (b) determining the extent of binding of the antibody-drug conjugate compound to the cells.   
     
     
         135 . The assay of  claim 134  wherein the cells are prostate, lung, colon, bladder, ovarian or Ewing's sarcoma tumor cells. 
     
     
         136 . A method of inhibiting cellular proliferation comprising treating mammalian tumor cells in a cell culture medium with an antibody-drug conjugate compound of  claim 114 , whereby proliferation of the tumor cells is inhibited. 
     
     
         137 . The method of  claim 136  wherein the mammalian tumor cells are prostate, lung, colon, bladder, ovarian or Ewing's sarcoma tumor cells. 
     
     
         138 . A pharmaceutical formulation comprising the antibody drug conjugate of  claim 114 , and a pharmaceutically acceptable diluent, carrier or excipient. 
     
     
         139 . The pharmaceutical formulation of  claim 138  further comprising a therapeutically effective amount of a chemotherapeutic agent selected from letrozole, oxaliplatin, doxetaxel, 5-FU, lapatinib, capecitabine, leucovorin, and gemcitabine. 
     
     
         140 . A method of treating cancer comprising administering to a patient the pharmaceutical formulation of  claim 138 . 
     
     
         141 . The method of  claim 140  wherein the cancer is selected from the group consisting of prostate cancer, lung cancer, colon cancer, bladder cancer, ovarian cancer and Ewing's sarcoma. 
     
     
         142 . The method of  claim 140  wherein the patient is administered a chemotherapeutic agent in combination with the antibody-drug conjugate compound, where the chemotherapeutic agent is selected from letrozole, cisplatin, carboplatin, taxol, paclitaxel, oxaliplatin, doxetaxel 5-FU, leucovorin, lapatinib, and gemcitabine. 
     
     
         143 . An article of manufacture comprising
 the pharmaceutical formulation of  claim 138 ;   a container; and   a package insert or label indicating that the compound can be used to treat cancer characterized by the overexpression of a STEAP-1 polypeptide.   
     
     
         144 . The article of manufacture of  claim 143  wherein the cancer is prostate cancer, lung cancer, colon cancer, bladder cancer, ovarian cancer or Ewing's sarcoma tumor. 
     
     
         145 . A method for making an antibody drug conjugate compound comprising a cysteine engineered anti-STEAP-1 antibody (Ab) of  claim 1 , and an auristatin drug moiety (D) wherein the cysteine engineered antibody is attached through the one or more engineered cysteine amino acids by a linker moiety (L) to D; the compound having Formula I:
   Ab-(L-D) p   I
   where p is 1, 2, 3, or 4; the method comprising the steps of:   (a) reacting an engineered cysteine group of the cysteine engineered antibody with a linker reagent to form antibody-linker intermediate Ab-L; and   (b) reacting Ab-L with an activated drug moiety D; whereby the antibody-drug conjugate is formed;   or comprising the steps of:   (c) reacting a nucleophilic group of a drug moiety with a linker reagent to form drug-linker intermediate D-L; and   (d) reacting D-L with an engineered cysteine group of the cysteine engineered antibody; whereby the antibody-drug conjugate is formed.   
     
     
         146 . The method of  claim 145  further comprising the step of expressing the cysteine engineered antibody in chinese hamster ovary (CHO) cells. 
     
     
         147 . The method of  claim 146  further comprising the step of treating the expressed cysteine engineered antibody with a reducing agent. 
     
     
         148 . The method of  claim 147  wherein the reducing agent is selected from TCEP and DTT. 
     
     
         149 . The method of  claim 147  further comprising the step of treating the expressed cysteine engineered antibody with an oxidizing agent, after treating with the reducing agent. 
     
     
         150 . The method of  claim 149  wherein the oxidizing agent is selected from copper sulfate, dehydroascorbic acid, and air. 
     
     
         151 . An antibody that binds to STEAP-1, wherein the antibody comprises (a) an HVR-L1 comprising an amino acid sequence of SEQ ID NO:11, and (b) at least one, two, three, four, or five HVRs' selected from:
 (1) an HVR-H1 comprising the amino acid sequence of SEQ ID NO:14;   (2) an HVR-H2 comprising the amino acid sequence of SEQ ID NO:15;   (3) an HVR-H3 comprising the amino acid sequence of SEQ ID NO:16;   (4) an HVR-L2 comprising the amino acid sequence of SEQ ID NO:12; and   (5) an HVR-L3 comprising an amino acid sequence of SEQ ID NO:13.   
     
     
         152 . The antibody of  claim 151  wherein the antibody further comprises a cysteine at one or more positions selected from 15, 43, 110, 144, 168 and 205 of the light chain according to Kabat numbering convention and 41, 88, 115, 118, 120, 171, 172, 282, 375, and 400 of the heavy chain according to EU numbering convention. 
     
     
         153 . The antibody of  claim 152 , wherein a cysteine is at position 205 of the light chain. 
     
     
         154 . The antibody of  claim 152 , wherein a cysteine is at position 118 of the heavy chain. 
     
     
         155 . The antibody of  claim 152 , wherein a cysteine is at position 400 of the heavy chain. 
     
     
         156 . The antibody of  claim 152  wherein the antibody is selected from a monoclonal antibody, a bispecific antibody, a chimeric antibody, a human antibody, and a humanized antibody. 
     
     
         157 . The antibody of  claim 152  which is an antibody fragment. 
     
     
         158 . The antibody of  claim 157  wherein the antibody fragment is a Fab fragment. 
     
     
         159 . The antibody of  claim 152  which is selected from a chimeric antibody, a human antibody, or a humanized antibody. 
     
     
         160 . The antibody of  claim 152  which is produced in bacteria. 
     
     
         161 . The antibody of  claim 152  which is produced in CHO cells. 
     
     
         162 . A method of determining the presence of a STEAP-1 protein in a sample suspected of containing said protein, said method comprising exposing said sample to an antibody of  claim 152  and determining binding of said antibody to said STEAP-1 protein in said sample, wherein binding of the antibody to said protein is indicative of the presence of said protein in said sample. 
     
     
         163 . The method of  claim 162  wherein said sample comprises a cell suspected of expressing said STEAP-1 protein. 
     
     
         164 . The method of  claim 162  wherein said cell is B cell. 
     
     
         165 . The method of  claim 162  wherein the antibody is covalently attached to a label selected from a fluorescent dye, a radioisotope, biotin, or a metal-complexing ligand. 
     
     
         166 . A pharmaceutical formulation comprising the anti-STEAP-1 antibody of  claim 152 , and a pharmaceutically acceptable diluent, carrier or excipient. 
     
     
         167 . The antibody of  claim 152  wherein the antibody is covalently attached to an auristatin or a maytansinoid drug moiety whereby an antibody drug conjugate is formed. 
     
     
         168 . The antibody-drug conjugate of  claim 167  comprising an antibody (Ab), and an auristatin or maytansinoid drug moiety (D) wherein the cysteine engineered antibody is attached through one or more free cysteine amino acids by a linker moiety (L) to D; the compound having Formula I:
   Ab-(L-D) p   I
 
 where p is 1, 2, 3, or 4. 
 
     
     
         169 . The antibody-drug conjugate compound of  claim 167  wherein p is 2. 
     
     
         170 . The antibody-drug conjugate compound of  claim 167  wherein L has the formula:
   -A a -W w —Y y —
 
 where: 
 A is a Stretcher unit covalently attached to a cysteine thiol of the cysteine engineered antibody (Ab); 
 a is 0 or 1; 
 each W is independently an Amino Acid unit; 
 w is an integer ranging from 0 to 12; 
 Y is a Spacer unit covalently attached to the drug moiety; and 
 y is 0, 1 or 2. 
 
     
     
         171 . The antibody-drug conjugate compound of  claim 170  having the formula: 
       
         
           
           
               
               
           
         
         where PAB is para-aminobenzylcarbamoyl, and R 17  is a divalent radical selected from (CH 2 ) r , C 3 -C 8  carbocyclyl, O—(CH 2 ) r , arylene, (CH 2 ) r -arylene, -arylene-(CH 2 ) r —, (CH 2 ) r —(C 3 -C 8  carbocyclyl), (C 3 -C 8  carbocyclyl)-(CH 2 ) r , C 3 -C 8  heterocyclyl, (CH 2 ) r —(C 3 -C 8  heterocyclyl), —(C 3 -C 8  heterocyclyl)-(CH 2 ) r —, —CH 2 ) r C(O)NR  b (CH 2 ) r —, —CH 2 CH 2 O) r —, —(CH 2 CH 2 O) r —CH 2 —, —(CH 2 ) r C(O)NR b (CH 2 CH 2 O) r —, —(CH 2 ) r C(O)NR b (CH 2 CH 2 O) r —CH 2 —, —(CH 2 CH 2 O) r C(O)NR b (CH 2 CH 2 O) r —, —(CH 2 CH 2 O) r C(O)NR b (CH 2 CH 2 O) r —CH 2 —, and —(CH 2 CH 2 O) r C(O)NR b (CH 2 ) r —; where R b  is H, C 1 -C 6  alkyl, phenyl, or benzyl; and r is independently an integer ranging from 1 to 10. 
       
     
     
         172 . The antibody-drug conjugate compound of  claim 170  wherein W w  is valine-citrulline. 
     
     
         173 . The antibody-drug conjugate compound of  claim 170  wherein R 17  is (CH 2 ) 5  or (CH 2 ) 2 . 
     
     
         174 . The antibody-drug conjugate compound of  claim 170  having the formula: 
       
         
           
           
               
               
           
         
       
     
     
         175 . The antibody-drug conjugate compound of  claim 174  wherein R 17  is (CH 2 ) 5  or (CH 2 ) 2 . 
     
     
         176 . The antibody-drug conjugate compound of  claim 170  having the formula: 
       
         
           
           
               
               
           
         
       
     
     
         177 . The antibody-drug conjugate compound of  claim 168  wherein L is SMCC, SPP or BMPEO. 
     
     
         178 . The antibody-drug conjugate compound of  claim 168  wherein D is MMAE, having the structure: 
       
         
           
           
               
               
           
         
         wherein the wavy line indicates the attachment site to the linker L. 
       
     
     
         179 . The antibody-drug conjugate compound of  claim 168  wherein D is MMAF, having the structure: 
       
         
           
           
               
               
           
         
         wherein the wavy line indicates the attachment site to the linker L. 
       
     
     
         180 . The antibody-drug conjugate compound of  claim 168  wherein D is DM1, having the structure: 
       
         
           
           
               
               
           
         
         wherein the wavy line indicates the attachment site to the linker L. 
       
     
     
         181 . The antibody-drug conjugate compound of  claim 167  wherein the parent anti-STEAP-1 antibody is selected from a monoclonal antibody, a bispecific antibody, a chimeric antibody, a human antibody, a humanized antibody, and an antibody fragment. 
     
     
         182 . The antibody-drug conjugate compound of  claim 167  wherein the antibody fragment is a Fab fragment. 
     
     
         183 . An antibody-drug conjugate compound selected from the structures: 
       
         
           
           
               
               
           
         
         wherein Val is valine; Cit is citrulline; p is 1, 2, 3, or 4; and Ab is an anti-STEAP-1 antibody of  claim 186 . 
       
     
     
         184 . The antibody drug conjugate of  claim 167  wherein the auristatin is MMAE or MMAF. 
     
     
         185 . The antibody drug conjugate of  claim 168  wherein L is MC-val-cit-PAB or MC. 
     
     
         186 . An assay for detecting B cells comprising:
 exposing cells to an antibody-drug conjugate compound of  claim 165 ; and   determining the extent of binding of the antibody-drug conjugate compound to the cells.   
     
     
         187 . A method of inhibiting cellular proliferation comprising treating mammalian cancerous B cells in a cell culture medium with an antibody-drug conjugate compound of  claim 167 , whereby proliferation of the cancerous B cells is inhibited. 
     
     
         188 . A pharmaceutical formulation comprising the antibody drug conjugate of  claim 167 , and a pharmaceutically acceptable diluent, carrier or excipient. 
     
     
         189 . A method of treating cancer comprising administering to a patient the pharmaceutical formulation of  claim 188 . 
     
     
         190 . The method of  claim 189  wherein the cancer is selected from the group consisting of lymphoma, non-Hogkins lymphoma (NHL), aggressive NHL, relapsed aggressive NHL, relapsed indolent NHL, refractory NHL, refractory indolent NHL, chronic lymphocytic leukemia (CLL), small lymphocytic lymphoma, leukemia, hairy cell leukemia (HCL), acute lymphocytic leukemia (ALL), and mantle cell lymphoma. 
     
     
         191 . The method of  claim 189  wherein the patient is administered a cytotoxic agent in combination with the antibody-drug conjugate compound. 
     
     
         192 . An article of manufacture comprising
 the pharmaceutical formulation of  claim 186 ;   a container; and   a package insert or label indicating that the compound can be used to treat cancer characterized by the overexpression of a STEAP-1 polypeptide.   
     
     
         193 . The article of manufacture of  claim 192  wherein the cancer is selected from the group consisting of prostate cancer, lung cancer, colon cancer, bladder cancer, ovarian cancer and Ewing's sarcoma. 
     
     
         194 . A method for making an antibody drug conjugate compound comprising an anti-STEAP-1 antibody (Ab) of  claim 152 , and an auristatin or maytansinoid drug moiety (D) wherein the antibody is attached through the one or more engineered cysteine amino acids by a linker moiety (L) to D; the compound having Formula I:
   Ab-(L-D) p   I
   where p is 1, 2, 3, or 4; the method comprising the steps of:   (a) reacting an engineered cysteine group of the antibody with a linker reagent to form antibody-linker intermediate Ab-L; and   (b) reacting Ab-L with an activated drug moiety D; whereby the antibody-drug conjugate is formed;   or comprising the steps of:   (c) reacting a nucleophilic group of a drug moiety with a linker reagent to form drug-linker intermediate D-L; and   (d) reacting D-L with an engineered cysteine group of the antibody; whereby the antibody-drug conjugate is formed.   
     
     
         195 . The method of  claim 194  further comprising the step of expressing the antibody in chinese hamster ovary (CHO) cells. 
     
     
         196 . The method of  claim 195  further comprising the step of treating the expressed antibody with a reducing agent. 
     
     
         197 . The method of  claim 196  wherein the reducing agent is selected from TCEP and DTT. 
     
     
         198 . The method of  claim 196  further comprising the step of treating the expressed antibody with an oxidizing agent, after treating with the reducing agent. 
     
     
         199 . The method of  claim 198  wherein the oxidizing agent is selected from copper sulfate, dehydroascorbic acid, and air. 
     
     
         200 . The antibody of  claim 152  wherein the antibody comprises a heavy chain sequence selected from any one of SEQ ID NOS:9 or 10. 
     
     
         201 . The antibody of  claim 152  wherein the antibody comprises a light chain sequence of SEQ ID NO:6. 
     
     
         202 . The antibody of  claim 152  wherein the antibody comprises a light chain sequence of SEQ ID NO:6 and a heavy chain sequence of SEQ ID NO:9. 
     
     
         203 . The antibody of  claim 152  wherein the antibody comprises a light chain sequence of SEQ ID NO:6 and a heavy chain sequence of SEQ ID NO:10. 
     
     
         204 . An antibody that binds to STEAP-1, wherein the antibody comprises a light chain region selected from:
 (1) a light chain region comprising the amino acid sequence of SEQ ID NO:90;   (2) a light chain region comprising the amino acid sequence of SEQ ID NO:91;   (3) a light chain region comprising the amino acid sequence of SEQ ID NO:92;   (4) a light chain region comprising the amino acid sequence of SEQ ID NO:93;   (5) a light chain region comprising the amino acid sequence of SEQ ID NO:94;   (6) a light chain region comprising the amino acid sequence of SEQ ID NO:95:   (7) a light chain region comprising the amino acid sequence of SEQ ID NO:96;   (8) a light chain region comprising the amino acid sequence of SEQ ID NO:97;   (9) a light chain region comprising the amino acid sequence of SEQ ID NO:98;   (10) a light chain region comprising the amino acid sequence of SEQ ID NO:99;   (11) a light chain region comprising the amino acid sequence of SEQ ID NO:100; and   (12) a light chain region comprising the amino acid sequence of SEQ ID NO:101.   
     
     
         205 . The antibody of  claim 204 , wherein the antibody is humanized. 
     
     
         206 . A polynucleotide encoding a light chain region selected from:
 (1) a light chain region comprising the amino acid sequence of SEQ ID NO:90;   (2) a light chain region comprising the amino acid sequence of SEQ ID NO:91;   (3) a light chain region comprising the amino acid sequence of SEQ ID NO:92;   (4) a light chain region comprising the amino acid sequence of SEQ ID NO:93;   (5) a light chain region comprising the amino acid sequence of SEQ ID NO:94;   (6) a light chain region comprising the amino acid sequence of SEQ ID NO:95;   (7) a light chain region comprising the amino acid sequence of SEQ ID NO:96;   (8) a light chain region comprising the amino acid sequence of SEQ ID NO:97;   (9) a light chain region comprising the amino acid sequence of SEQ ID NO:98;   (10) a light chain region comprising the amino acid sequence of SEQ ID NO:99;   (11) a light chain region comprising the amino acid sequence of SEQ ID NO:100; and   (12) a light chain region comprising the amino acid sequence of SEQ ID NO:101.   
     
     
         207 . A vector comprising the polynucleotide of  claim 206 . 
     
     
         208 . A host cell comprising the vector of  claim 207 . 
     
     
         209 . The host cell of  claim 208 , wherein the host cell is a bacteria, yeast, insect, or eukaryotic cell. 
     
     
         210 . The host cell of  claim 209 , wherein the host cell is a CHO cell. 
     
     
         211 . A method of making an anti-STEAP-1 antibody, wherein the method comprises a) culturing the host cell of  claim 208  under conditions suitable for expression of the polynucleotide encoding the antibody, and b) isolating the antibody. 
     
     
         212 . The antibody of  claim 204 , wherein the STEAP-1 is expressed on the surface of a cell. 
     
     
         213 . The antibody of  claim 212 , wherein the cell is a prostate, lung, colon, bladder, or ovary cell or a Ewing's sarcoma cell. 
     
     
         214 . The antibody of  claim 213 , wherein the cell is associated with a proliferative disorder. 
     
     
         215 . The antibody of  claim 214 , wherein the disorder is cancer. 
     
     
         216 . The antibody of  claim 215 , wherein the cancer is metastasis. 
     
     
         217 . The antibody of  claim 204 , wherein the antibody is a monoclonal antibody. 
     
     
         218 . The antibody of  claim 217 , wherein the antibody is an antibody fragment selected from a Fab, Fab′-SH, Fv, scFv, or (Fab′) 2  fragment. 
     
     
         219 . The antibody of  claim 218 , wherein the antibody is humanized. 
     
     
         220 . A method of detecting the presence of STEAP-1 in a biological sample, the method comprising contacting the biological sample with an antibody of  claim 204  under conditions permissive for binding of the antibody to STEAP-1, and detecting whether a complex is formed between the antibody and STEAP-1 
     
     
         221 . The method of  claim 220 , wherein the biological sample is from a patient suspected of having a prostate, lung, colon, bladder, ovarian cell or Ewing's sarcoma cell proliferative disorder. 
     
     
         222 . An immunoconjugate comprising an antibody of  claim 204  covalently attached to a cytotoxic agent. 
     
     
         223 . The immunoconjugate of  claim 222 , wherein the cytotoxic agent is selected from a toxin, a chemotherapeutic agent, a drug moiety, an antibiotic, a radioactive isotope, and a nucleolytic enzyme. 
     
     
         224 . A pharmaceutical composition comprising the immunoconjugate of  claim 222  and a pharmaceutically acceptable carrier.

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