Patents by Inventor Kimberly Lee

Kimberly Lee has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7807789
    Abstract: The invention discloses 168 novel phosphorylation sites identified in signal transduction proteins and pathways downstream of, and including, EGFR kinase, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Actin Binding proteins, Adaptor/Scaffold proteins, Calcium-Binding Proteins, Cell Cycle Regulation proteins, Cytoskeletal proteins, DNA Binding and Replication Proteins, GTPase Activating proteins, Guanine Nucleotide Exchange Factor proteins, Lipid Kinases, Receptor Tyrosine Kinases, Receptor Tyrosine Kinase ligands, Protein Kinases, Receptor and Protein Phosphatases, Transcription Factor proteins, Tumor Suppressor proteins, and Vesicle proteins.
    Type: Grant
    Filed: June 21, 2007
    Date of Patent: October 5, 2010
    Assignee: Cell Signaling Technology, Inc.
    Inventors: Ailan Guo, Kimberly Lee, Klarisa Rikova, Charles Farnsworth, Albrecht Moritz, Yu Li, Robert Polakiewicz
  • Publication number: 20100173322
    Abstract: The invention discloses nearly 219 novel phosphorylation sites identified in signal transduction proteins and pathways underlying Anaplastic Large Cell Lymphoma (ALCL) involving the NPM-ALK translocation/fusion, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: March 6, 2008
    Publication date: July 8, 2010
    Inventors: Roberto Polakiewicz, Ailan Guo, Albrecht Moritz, Kimberly Lee, Erik Spek, Charles Farnsworth, Francesco Boccalatte
  • Publication number: 20100159477
    Abstract: The invention discloses novel phosphorylation sites identified in signal transduction proteins and pathways, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: July 13, 2007
    Publication date: June 24, 2010
    Inventors: Peter Hornbeck, Valerie Goss, Kimberly Lee, Ting-Lei Gu, Albrecht Moritz
  • Publication number: 20100151483
    Abstract: The invention discloses novel phosphorylation sites identified in signal transduction proteins and pathways, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: July 13, 2007
    Publication date: June 17, 2010
    Applicant: CELL SIGNALING TECHNOLOGY, INC.
    Inventors: Peter Hornbeck, Valerie Goss, Kimberly Lee, Ting-Lei Gu, Albrecht Moritz
  • Publication number: 20100151495
    Abstract: The invention discloses nearly 443 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human carcinoma, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Protein kinases (including Serine/Threonine dual specificity, and Tyrosine kinases), Adaptor/Scaffold proteins, Transcription factors, Phospoatases, Tumor supressors, Ubiquitin conjugating system proteins, Translation initiation complex proteins, RNA binding proteins, Apoptosis proteins, Adhesion proteins, G protein regulators/GTPase activating protein/Guanine nucleotide exchange factor proteins, and DNA binding/replication/repair proteins, as well as other protein types.
    Type: Application
    Filed: February 29, 2008
    Publication date: June 17, 2010
    Inventors: Roberto Polakiewicz, Ailan Guo, Albrecht Moritz, Klarisa Rikova, Kimberly Lee, Erik Spek, Yu Li, Charles Farnsworth
  • Publication number: 20100129930
    Abstract: The invention discloses 351 novel phosphorylation sites identified in carcinoma, peptides (including AQUA peptides) comprising a phosphorylation site of the invention, antibodies specifically bind to a novel phosphorylation site of the invention, and diagnostic and therapeutic uses of the above.
    Type: Application
    Filed: July 27, 2007
    Publication date: May 27, 2010
    Inventors: Roberto Polakewicz, Charles Farnsworth, Ailan Guo, Klarisa Rikova, Albrecht Moritz, Kimberly Lee, Erik Spek
  • Publication number: 20100129928
    Abstract: The invention discloses 347 novel phosphorylation sites identified in carcinoma, peptides (including AQUA peptides) comprising a phosphorylation site of the invention, antibodies specifically bind to a novel phosphorylation site of the invention, and diagnostic and therapeutic uses of the above.
    Type: Application
    Filed: July 27, 2007
    Publication date: May 27, 2010
    Inventors: Roberto Polakewicz, Charles Farnsworth, Ailan Guo, Klarisa Rikova, Albrecht Moritz, Kimberly Lee, Erik Spek
  • Publication number: 20100129929
    Abstract: The invention discloses 349 novel phosphorylation sites identified in carcinoma, peptides (including AQUA peptides) comprising a phosphorylation site of the invention, antibodies specifically bind to a novel phosphorylation site of the invention, and diagnostic and therapeutic uses of the above.
    Type: Application
    Filed: July 27, 2007
    Publication date: May 27, 2010
    Inventors: Roberto Polakewicz, Charles Farnsworth, Ailan Guo, Klarisa Rikova, Albrecht Moritz, Kimberly Lee, Erik Spek
  • Publication number: 20100093008
    Abstract: The invention discloses a newly discovered Flt3 phosphorylation site, tyrosine 969 (Tyr969) in the intracellular domain, and provides reagents, including polyclonal and monoclonal antibodies, that selectively bind to Flt3 when phosphorylated at this site. Also provided are assays utilizing this reagent, including methods for determining the phosphorylation of Flt3 in a biological sample, selecting a patient suitable for Flt3 inhibitor therapy, profiling Flt3 activation in a test tissue, and identifying a compound that modulates phosphorylation of Flt3 in a test tissue, by using a detectable reagent, such as the disclosed antibody, that binds to Flt3 only when phosphorylated at Tyr969. The sample or test tissue may be taken from a subject suspected of having cancer, such as acute myelogenous leukemia (AML).
    Type: Application
    Filed: March 2, 2007
    Publication date: April 15, 2010
    Inventors: Valerie GOSS, Roberto Polakiewicz, Kimberly Lee, Ting-Lei Gu, Albrecht Moritz, Jiong Wu
  • Publication number: 20100009463
    Abstract: The invention discloses novel phosphorylation sites identified in signal transduction proteins and pathways, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: July 13, 2007
    Publication date: January 14, 2010
    Inventors: Peter Hornbeck, Valerie Goss, Kimberly Lee, Ting-Lei Gu, Albrecht Moritz
  • Publication number: 20090325189
    Abstract: The invention discloses 443 novel phosphorylation sites identified in leukemia, peptides (including AQUA peptides) comprising a phosphorylation site of the invention, antibodies specifically bind to a novel phosphorylation site of the invention, and diagnostic and therapeutic uses of the above.
    Type: Application
    Filed: September 18, 2007
    Publication date: December 31, 2009
    Applicant: Cell Signaling Technology , Inc
    Inventors: Peter Hornbeck, Albrecht Moritz, Valerie Goss, Kimberly Lee, Ting-Lie Gu
  • Publication number: 20090298093
    Abstract: The invention discloses nearly 300 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human ATM/ATR kinase signaling pathways, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection, profiling and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: DNA repair proteins, Adaptor/Scaffold proteins, Cell cycle regulation proteins, G Protein/GTPase Activating/Guanine Nucleotide Exchange Factor proteins, DNA binding proteins, DNA replication proteins, Kinases, Disease associated proteins proteins, Methyltransferase, Ubiquitin conjugating proteins, Proteases, Phosphatases, and Transcription proteins.
    Type: Application
    Filed: April 27, 2007
    Publication date: December 3, 2009
    Inventors: Roberto Polakiewicz, Kimberly Lee, Ailan Guo, Matthew Stokes
  • Publication number: 20090263832
    Abstract: The invention discloses nearly 123 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human Leukemia, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: November 29, 2006
    Publication date: October 22, 2009
    Inventors: Roberto Polakiewicz, Ting-Lei Gu, Valerie Goss, Kimberly Lee
  • Publication number: 20090258436
    Abstract: The invention discloses novel phosphorylation sites identified in signal transduction proteins and pathways, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: July 13, 2007
    Publication date: October 15, 2009
    Inventors: Peter Hornbeck, Valerie Goss, Ting-Lei Gu, Albrecht Moritz, Kimberly Lee
  • Publication number: 20090258442
    Abstract: The invention discloses nearly 474 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human carcinoma, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Kinase, Adaptor/Scaffold proteins, Phosphatase, G protein Regulator/Guanine Nucleotide Exchange Factors/GTPase Activating Proteins, Cytoskeleton Proteins, DNA Binding Proteins, Phospholipase, Receptor Proteins, Enzymes, DNA Repair/Replication Proteins, Adhesion Proteins, and Proteases, as well as other protein types.
    Type: Application
    Filed: February 29, 2008
    Publication date: October 15, 2009
    Inventors: Roberto Polakiewicz, Ailan Guo, Albrecht Moritz, Klarisa Rikova, Kimberly Lee, Erik Spek, Yu Li, Charles Farnsworth
  • Publication number: 20090220991
    Abstract: The invention discloses nearly 480 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human Leukemia, and provides phosphorylation site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose.
    Type: Application
    Filed: February 29, 2008
    Publication date: September 3, 2009
    Inventors: Roberto Polakiewicz, Valerie Goss, Albrecht Moritz, Ting-Lei Gu, Kimberly Lee
  • Publication number: 20090203034
    Abstract: The invention discloses 99 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human Brain Ischemia, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: protein kinases, adaptor/scaffold proteins, adhesion proteins, G proteins/GTPase/Guanine nucleotide exchange factors, Calcium binding proteins, cytoskeletal proteins, Channel proteins, Chaperone proteins, Helicases, Motor proteins, Translation proteins, RNA binding proteins, Ubiquitin conjugating system proteins, vesicle proteins and Receptor proteins.
    Type: Application
    Filed: May 11, 2007
    Publication date: August 13, 2009
    Inventors: Ailan Guo, Roberto Polakiewicz, Kimberly Lee
  • Publication number: 20090142777
    Abstract: The invention discloses 424 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human Leukemia, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Adaptor/Scaffold proteins, Cytoskeletal proteins, Cellular Metabolism enzymes, G Protein/GTPase Activating/Guanine Nucleotide Exchange Factor proteins, Immunoglobulin Superfamily proteins, Inhibitor proteins, Lipid Kinases, Nuclear DNA Repair/RNA Binding/Transcription proteins, Serine/Threonine Protein Kinases, Tyrosine Kinases, Protein Phosphatases, and Translation/Transporter proteins.
    Type: Application
    Filed: October 5, 2007
    Publication date: June 4, 2009
    Inventors: Valerie Goss, Albrecht Moritz, Ting-Lei Gu, Kimberly Lee, Roberto Polakiewicz
  • Publication number: 20090099340
    Abstract: The invention discloses 214 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human carcinoma, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Adaptor/Scaffold proteins, Cytoskeleton proteins, GTP Signaling proteins, Kinases, Metabolism proteins, Phosphatases/Phospho-diesterases/Proteases, Receptor proteins, RNA Processing proteins, Transcription proteins, Translation proteins, Transporter proteins, and Ubitquitin proteins, as well as other protein types.
    Type: Application
    Filed: October 12, 2007
    Publication date: April 16, 2009
    Inventors: Ailan Guo, Klarisa Rikova, Albrecht Moritz, Yu Li, Charles Farnsworth, Kimberly Lee, Roberto Polakiewicz
  • Publication number: 20090061459
    Abstract: The invention discloses nearly 443 novel phosphorylation sites identified in signal transduction proteins and pathways underlying human carcinoma, and provides phosphorylation-site specific antibodies and heavy-isotope labeled peptides (AQUA peptides) for the selective detection and quantification of these phosphorylated sites/proteins, as well as methods of using the reagents for such purpose. Among the phosphorylation sites identified are sites occurring in the following protein types: Protein kinases (including Serine/Threonine dual specificity, and Tyrosine kinases), Adaptor/Scaffold proteins, Transcription factors, Phospoatases, Tumor supressors, Ubiquitin conjugating system proteins, Translation initiation complex proteins, RNA binding proteins, Apoptosis proteins, Adhesion proteins, G protein regulators/GTPase activating protein/Guanine nucleotide exchange factor proteins, and DNA binding/replication/repair proteins, as well as other protein types.
    Type: Application
    Filed: February 29, 2008
    Publication date: March 5, 2009
    Inventors: Roberto Polakiewicz, Ailan Guo, Albrecht Moritz, Klarisa Rikova, Kimberly Lee, Erik Spek, Yu Li, Charles Farnsworth