Abstract: The present invention provides amino acid sequences of peptides that are encoded by genes within the human genome, the transporter peptides of the present invention. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the transporter peptides, and methods of identifying modulators of the transporter peptides.
Type:
Grant
Filed:
December 20, 2000
Date of Patent:
May 13, 2003
Assignee:
Applera Corporation
Inventors:
Gennady Merkulov, Karl Guegler, Marion Webster, Karen A. Ketchum, Valentina Di Francesco, Ellen M. Beasley
Abstract: The present invention provides amino acid sequences of peptides that are encoded by genes within the human genome, the kinase peptides of the present invention. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the kinase peptides, and methods of identifying modulators of the kinase peptides.
Type:
Grant
Filed:
March 26, 2001
Date of Patent:
March 18, 2003
Assignee:
Applera Corporation
Inventors:
Ming-Hui Wei, Ishwar Chandramouliswaran, Jane Ye, Karen A. Ketchum, Valentina Di Francesco, Ellen M. Beasley
Abstract: The present invention provides amino acid sequences of peptides that are encoded by genes within the human genome, the kinase peptides of the present invention. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the kinase peptides, and methods of identifying modulators of the kinase peptides.
Type:
Grant
Filed:
January 16, 2001
Date of Patent:
December 10, 2002
Assignee:
Applera Corporation
Inventors:
Jane Abu-Threideh, Fangcheng Gong, Karen A. Ketchum, Valentina Di Francesco, Ellen M. Beasley
Abstract: The present invention provides amino acid sequences of peptides that are encoded by genes within the human genome, the kinase peptides of the present invention. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the kinase peptides, and methods of identifying modulators of the kinase peptides.
Type:
Grant
Filed:
March 9, 2001
Date of Patent:
December 10, 2002
Assignee:
Applera Corporation
Inventors:
Chunhua Yan, Karen A Ketchum, Valentina Di Francesco, Ellen M Beasley
Abstract: The present invention provides amino acid sequences of glutathione peroxidase polypeptides that are encoded by genes within the human genome. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the enzyme peptides, and methods of identifying modulators of the enzyme peptides.
Type:
Grant
Filed:
April 2, 2001
Date of Patent:
October 22, 2002
Assignee:
Applera Corporation
Inventors:
Weiniu Gan, Fangcheng Gong, Valentina Di Francesco, Ellen M. Beasley
Abstract: The present invention provides amino acid sequences of peptides that are encoded by genes within the human genome, the enzyme peptides of the present invention. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the enzyme peptides, and methods of identifying modulators of the enzyme peptides.
Type:
Grant
Filed:
February 16, 2001
Date of Patent:
October 8, 2002
Assignee:
Applera Corporation
Inventors:
Ming-Hui Wei, Jane Ye, Karen A. Ketchum, Valentina Di Francesco, Ellen M. Beasley
Abstract: The present invention provides amino acid sequences of peptides that are encoded by genes within the human genome, the protease peptides of the present invention. The present invention specifically provides isolated peptide and nucleic acid molecules, methods of identifying orthologs and paralogs of the protease peptides, and methods of identifying modulators of the protease peptides.
Type:
Grant
Filed:
March 21, 2001
Date of Patent:
September 24, 2002
Assignee:
Applera Corporation
Inventors:
Weiniu Gan, Karen A. Ketchum, Valentina Di Francesco, Ellen M. Beasley