Patents Represented by Attorney, Agent or Law Firm Timothy R. Schwartz
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Patent number: 6660256Abstract: Isolated mpl ligand, isolated DNA encoding mpl ligand, and recombinant methods of preparing mpl ligand are disclosed. These mpl ligands are shown to influence the replication, differentiation or maturation of blood cells, especially megakaryocyte progenitor cells. Accordingly, these compounds are used for treatment of thrombocytopenia.Type: GrantFiled: December 2, 1994Date of Patent: December 9, 2003Assignee: Genetech, Inc.Inventors: Dan L. Eaton, Frederic J. de Sauvage
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Patent number: 6472393Abstract: Compounds having the structure shown below wherein A, B, N1, N2, X, Y, Q, R2, R5 and R6 are as defined herein are useful to inhibit serine protease enzymes, such as TF/factor VIIa factor Xa, thrombin and kallikrein. These compounds may be used in methods of preventing and/or treating clotting disorders.Type: GrantFiled: March 21, 2000Date of Patent: October 29, 2002Assignee: Genentech, Inc.Inventors: Ignacio Aliagas-Martin, Dean R. Artis, Michael S. Dina, John A. Flygare, Richard A. Goldsmith, Regina A. Munroe, Alan G. Olivero, Richard Pastor, Thomas E. Rawson, Kirk D. Robarge, Daniel P. Sutherlin, Kenneth J. Weese, Aihe Zhou, Yan Zhu
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Patent number: 6040136Abstract: A method for selecting novel proteins such as growth hormone and antibody fragment variants having altered binding properties for their respective receptor molecules is provided. The method comprises fusing a gene encoding a protein of interest to the carboxy terminal domain of the gene III coat protein of the filamentous phage M13. The gene fusion is mutated to form a library of structurally related fusion proteins that are expressed in low quantity on the surface of a phagemid particle. Biological selection and screening are employed to identify novel ligands useful as drug candidates. Disclosed are preferred phagemid expression vectors and selected human growth hormone variants.Type: GrantFiled: September 3, 1997Date of Patent: March 21, 2000Assignee: Genentech, Inc.Inventors: Lisa J. Garrard, Dennis J. Henner, Steven Bass, Ronald Greene, Henry B. Lowman, James A. Wells, David J. Matthews
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Patent number: 6037454Abstract: Humanized anti-CD11a antibodies and various uses therefor are disclosed. The humanized anti-CD11a antibody may bind specifically to human CD11a I-domain, have an IC50(nM) value of no more than about 1 nM for preventing adhesion of Jurkat cells to normal human epidermal keratinocytes expressing ICAM-1, and/or an IC50 (nM) value of no more than about 1 nM in the mixed lymphocyte response assay.Type: GrantFiled: November 20, 1997Date of Patent: March 14, 2000Assignee: Genentech, Inc.Inventors: Paula M. Jardieu, Leonard G. Presta
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Patent number: 6037320Abstract: A novel polypeptide, designated neurotrophic factor-4 (NT-4), has been identified by PCR amplification of human genomic DNA. Provided herein is nucleic acid encoding NT-4 useful in diagnostics and in the recombinant preparation of NT-4. Also provided herein are nucleic acids encoding naturally occurring amino acid sequence variants of NT-4, designated NT-4.beta., NT-4.gamma., and NT-4.DELTA.. The neurotrophic factors of the invention are useful in the treatment of nerve cells and in diagnostic assays.Type: GrantFiled: September 12, 1997Date of Patent: March 14, 2000Assignee: Genentech, Inc.Inventor: Arnon Rosenthal
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Patent number: 6034216Abstract: The present invention comprises growth hormone releasing peptides/peptidomimetics (GHRP) capable of causing release of growth hormone from the pituitary. Compositions containing the GHRP's of this invention are used to promote growth in mammals either alone or in combination with other growth promoting compounds, especially IGF-1. In a method of this invention GHRP's in combination with IGF-1 are used to treat Type II diabetes. An exemplary compound of this invention is provided below.Type: GrantFiled: April 8, 1998Date of Patent: March 7, 2000Assignee: Genentech Inc.Inventors: Todd C. Somers, Kathleen A. Elias, Ross G. Clark, Robert S. McDowell, Mark S. Stanley, John P. Burnier, Thomas E. Rawson
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Patent number: 6013478Abstract: The invention provides methods for the systematic analysis of the structure and function of polypeptides by identifying active domains which influence the activity of the polypeptide with a target substance. Such active domains are determined by substituting selected amino acid segments of the polypeptide with an analogous polypeptide segment from an analog to the polypeptide. The analog has a different activity with the target substance as compared to the parent polypeptide. The activities of the segment-substituted polypeptides are compared to the same activity for the parent polypeptide for the target. A comparison of such activities provides an indication of the location of the active domain in the parent polypeptide. The invention also provides methods for identifying the active amino acid residues within the active domain of the parent polypeptide.Type: GrantFiled: June 24, 1998Date of Patent: January 11, 2000Assignee: Genentech, Inc.Inventors: James A. Wells, Brian C. Cunningham
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Patent number: 6001621Abstract: The protein tyrosine kinase receptors, designated Rse and HPTK6, have been purified from human and/or murine cell tissues. Rse and HPTK6 have been cloned from a cDNA library of a human liver carcinoma cell line (i.e., Hep 3B) using PCR amplification. Provided herein are nucleic acid sequences encoding Rse and HPTK6 useful as diagnostics and in the recombinant preparation of Rse and HPTK6. Rse and HPTK6 are used in the preparation and purification of antibodies thereto and in diagnostic assays.Type: GrantFiled: December 20, 1993Date of Patent: December 14, 1999Assignees: Genetech, Inc., New England Deaconess (NED) HospitalInventors: Paul J. Godowski, Melanie R. Mark, David T. Scadden
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Patent number: 5914112Abstract: A method for improving clinical outcome in focal ischemic stroke in a mammal by increasing cerebral blood flow and/or reducing infarct size is described which involves administering an effective amount of an anti-CD18 antibody to the mammal, in the absence of removal of the arterial obstruction.Type: GrantFiled: January 22, 1997Date of Patent: June 22, 1999Assignees: Genentech, Inc., Univ. of VT and State Agricultural CollegeInventors: Martin M. Bednar, Cordell E. Gross, G. Roger Thomas
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Patent number: 5879673Abstract: The present invention is directed to the surprising and unexpected finding that biologically active thrombopoietin materials can be administered with substantial therapeutic effect at dosage rates commensurate with previously reported administration of such materials, but in a single or low-multiple daily administration. Thus, the predicate of the present invention relates to the reversal of thrombocytopenia by administering to a patient having or in need of such treatment a single or low-multiple daily dose of a therapeutically effective amount of a thrombopoietin. The preferable dose of the active material ranges from about 1 to about 10 .mu.g/kg body weight.Type: GrantFiled: August 28, 1996Date of Patent: March 9, 1999Assignee: Genentech, Inc.Inventor: Griffith Roger Thomas
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Patent number: 5846765Abstract: A method for identifying and selecting novel substrates for enzymes is provided. The method comprises constructing a gene fusion comprising DNA encoding a polypeptide fused to DNA encoding a substrate peptide, which in turn is fused to DNA encoding at least a portion of a phage coat protein. The DNA encoding the substrate peptide is mutated at one or more codons thereby generating a family of mutants. The fusion protein is expressed on the surface of a phagemid particle and subjected to chemical or enzymatic modification of the substrate peptide. Those phagemid particles which have been modified are then separated from those that have not.Type: GrantFiled: May 16, 1995Date of Patent: December 8, 1998Assignee: Genentech, Inc.Inventors: David J. Matthews, James A. Wells, Mark J. Zoller
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Patent number: 5834598Abstract: A method for selecting novel proteins such as growth hormone and antibody fragment variants having altered binding properties for their respective receptor molecules is provided. The method comprises fusing a gene encoding a protein of interest to the carboxy terminal domain of the gene III coat protein of the filamentous phage M13. The gene fusion is mutated to form a library of structurally related fusion proteins that are expressed in low quantity on the surface of a phagemid particle. Biological selection and screening are employed to identify novel ligands useful as drug candidates. Disclosed are preferred phagemid expression vectors and selected human growth hormone variants.Type: GrantFiled: June 5, 1995Date of Patent: November 10, 1998Assignee: Genentech, Inc.Inventors: Henry B. Lowman, James A. Wells
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Patent number: 5834250Abstract: The invention provides methods for the systematic analysis of the structure and function of polypeptides by identifying active domains which influence the activity of the polypeptide with a target substance. Such active domains are determined by substituting selected amino acid segments of the polypeptide with an analogous polypeptide segment from an analog to the polypeptide. The analog has a different activity with the target substance as compared to the parent polypeptide. The activities of the segment-substituted polypeptides are compared to the same activity for the parent polypeptide for the target. A comparison of such activities provides an indication of the location of the active domain in the parent polypeptide. The invention also provides methods for identifying the active amino acid residues within the active domain of the parent polypeptide.Type: GrantFiled: June 30, 1997Date of Patent: November 10, 1998Assignee: Genentech, Inc.Inventors: James A. Wells, Brian C. Cunningham
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Patent number: 5821047Abstract: A method for selecting novel proteins such as growth hormone and antibody fragment variants having altered binding properties for their respective receptor molecules is provided. The method comprises fusing a gene encoding a protein of interest to the carboxy terminal domain of the gene III coat protein of the filamentous phage M13. The gene fusion is mutated to form a library of structurally related fusion proteins that are expressed in low quantity on the surface of a phagemid particle. Biological selection and screening are employed to identify novel ligands useful as drug candidates. Disclosed are preferred phagemid expression vectors and selected human growth hormone variants.Type: GrantFiled: June 5, 1995Date of Patent: October 13, 1998Assignee: Genentech, Inc.Inventors: Lisa J. Garrard, Dennis J. Henner, Steven Bass, Ronald Greene, Henry B. Lowman, James A. Wells, David J. Matthews
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Patent number: 5798337Abstract: The present invention comprises growth hormone releasing peptides/peptidomimetics (GHRP) capable of causing release of growth hormone from the pituitary. Compositions containing the GHRP's of this invention are used to promote growth in mammals either alone or in combination with other growth promoting compounds, especially IGF-1. In a method of this invention GHRP's in combination with IGF-1 are used to treat Type II diabetes. An exemplary compound of this invention is provided below.Type: GrantFiled: November 16, 1994Date of Patent: August 25, 1998Assignee: Genentech, Inc.Inventors: Todd C. Somers, Kathleen A. Elias, Ross G. Clark, Robert S. McDowell, Mark S. Stanley, John P. Burnier, Thomas E. Rawson
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Patent number: 5780279Abstract: A method for identifying and selecting novel substrates for enzymes is provided. The method comprises constructing a gene fusion comprising DNA encoding a polypeptide fused to DNA encoding a substrate peptide, which in turn is fused to DNA encoding at least a portion of a phage coat protein. The DNA encoding the substrate peptide is mutated at one or more codons thereby generating a family of mutants. The fusion protein is expressed on the surface of a phagemid particle and subjected to chemical or enzymatic modification of the substrate peptide. Those phagemid particles which have been modified are then separated from those that have not.Type: GrantFiled: April 5, 1995Date of Patent: July 14, 1998Assignee: Genentech, Inc.Inventors: David J. Matthews, James A. Wells, Mark J. Zoller
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Patent number: 5709858Abstract: The protein tyrosine kinase receptors, designated Rse and HPTK6, have been purified from human and/or murine cell tissues. Rse and HPTK6 have been cloned from a cDNA library of a human liver carcinoma cell line (i.e., Hep 3B) using PCR amplification. Provided herein are nucleic acid sequences encoding Rse and HPTK6 useful as diagnostics and in the recombinant preparation of Rse and HPTK6. Rse and HPTK6 are used in the preparation and purification of antibodies thereto and in diagnostic assays.Type: GrantFiled: May 22, 1995Date of Patent: January 20, 1998Assignees: Genentech, Inc., New England Deaconess Hosp.Inventors: Paul J. Godowski, Melanie R. Mark, David T. Scadden