Patents by Inventor Stéphanie CABANTOUS

Stéphanie CABANTOUS 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: 11740244
    Abstract: The present invention relates to methods and kits for detection protein-protein interactions.
    Type: Grant
    Filed: August 6, 2020
    Date of Patent: August 29, 2023
    Assignees: INSERM (INSTITUT NATIONAL DE LA SANTE ET DE LA RECHERCHE MEDICALE), UNIVERSITE PAUL SABATIER TOULOUSE III
    Inventors: Stéphanie Cabantous, Faten Koraïchi, Gilles Favre
  • Publication number: 20210041450
    Abstract: The present invention relates to methods and kits for detection protein-protein interactions.
    Type: Application
    Filed: August 6, 2020
    Publication date: February 11, 2021
    Inventors: Stéphanie CABANTOUS, Faten KORAÏCHI, Gilles FAVRE
  • Patent number: 10782304
    Abstract: The present invention relates to methods and kits for detection protein-protein interactions.
    Type: Grant
    Filed: June 23, 2016
    Date of Patent: September 22, 2020
    Assignees: INSERM (INSTITUT NATIONAL DE LA SANTÉ ET DE LA RECHERCHE MÉDICALE), UNIVERSITÉ PAUL SABATIER TOULOUSE III
    Inventors: Stéphanie Cabantous, Faten Koraïchi, Gilles Favre
  • Publication number: 20180164324
    Abstract: The present invention relates to methods and kits for detection protein-protein interactions.
    Type: Application
    Filed: June 23, 2016
    Publication date: June 14, 2018
    Inventors: Stéphanie CABANTOUS, Faten KORAÏCHI, Gilles FAVRE
  • Patent number: 9081014
    Abstract: The invention provides a protein labeling and detection system based on self-complementing fragments of fluorescent and chromophoric proteins. The system of the invention is exemplified with various combinations of self-complementing fragments derived from Aequorea victoria Green Fluorescent Protein (GFP), which are used to detect and quantify protein solubility in multiple assay formats, both in vitro and in vivo.
    Type: Grant
    Filed: January 28, 2014
    Date of Patent: July 14, 2015
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Publication number: 20150099271
    Abstract: Disclosed herein are fluorescent proteins and Split-Fluorescent proteins (SFPs) including Split-Green Fluorescent Proteins, such as tripartite split-GFPs. Nucleic acid molecules encoding the fluorescent proteins and SFPs, as well as methods of using the fluorescent proteins and SFPs, are also disclosed. For example, methods of detecting protein-protein interactions are disclosed herein.
    Type: Application
    Filed: October 6, 2014
    Publication date: April 9, 2015
    Inventors: Geoffrey Waldo, Stephanie Cabantous
  • Publication number: 20140141415
    Abstract: The invention provides a protein labeling and detection system based on self-complementing fragments of fluorescent and chromophoric proteins. The system of the invention is exemplified with various combinations of self-complementing fragments derived from Aequorea victoria Green Fluorescent Protein (GFP), which are used to detect and quantify protein solubility in multiple assay formats, both in vitro and in vivo.
    Type: Application
    Filed: January 28, 2014
    Publication date: May 22, 2014
    Applicant: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 8685667
    Abstract: The invention provides a protein labeling and detection system based on self-complementing fragments of fluorescent and chromophoric proteins. The system of the invention is exemplified with various combinations of self-complementing fragments derived from Aequorea victoria Green Fluorescent Protein (GFP), which are used to detect and quantify protein solubility in multiple assay formats, both in vitro and in vivo.
    Type: Grant
    Filed: May 27, 2011
    Date of Patent: April 1, 2014
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 8420390
    Abstract: Provided are methods of assaying and improving protein folding using circular permutants of fluorescent proteins, including circular permutants of GFP variants and combinations thereof. The invention further provides various nucleic acid molecules and vectors incorporating such nucleic acid molecules, comprising polynucleotides encoding fluorescent protein circular permutants derived from superfolder GFP, which polynucleotides include an internal cloning site into which a heterologous polynucleotide may be inserted in-frame with the circular permutant coding sequence, and which when expressed are capable of reporting on the degree to which a polypeptide encoded by such an inserted heterologous polynucleotide is correctly folded by correlation with the degree of fluorescence exhibited.
    Type: Grant
    Filed: October 12, 2012
    Date of Patent: April 16, 2013
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 8372635
    Abstract: Provided are methods of assaying and improving protein folding using circular permutants of fluorescent proteins, including circular permutants of GFP variants and combinations thereof. The invention further provides various nucleic acid molecules and vectors incorporating such nucleic acid molecules, comprising polynucleotides encoding fluorescent protein circular permutants derived from superfolder GFP, which polynucleotides include an internal cloning site into which a heterologous polynucleotide may be inserted in-frame with the circular permutant coding sequence, and which when expressed are capable of reporting on the degree to which a polypeptide encoded by such an inserted heterologous polynucleotide is correctly folded by correlation with the degree of fluorescence exhibited.
    Type: Grant
    Filed: June 24, 2008
    Date of Patent: February 12, 2013
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Publication number: 20110256620
    Abstract: The invention provides a protein labeling and detection system based on self-complementing fragments of fluorescent and chromophoric proteins. The system of the invention is exemplified with various combinations of self-complementing fragments derived from Aequorea victoria Green Fluorescent Protein (GFP), which are used to detect and quantify protein solubility in multiple assay formats, both in vitro and in vivo.
    Type: Application
    Filed: May 27, 2011
    Publication date: October 20, 2011
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 7960144
    Abstract: Provided are methods of assaying and improving protein folding using circular permutants of fluorescent proteins, including circular permutants of GFP variants and combinations thereof. The invention further provides various nucleic acid molecules and vectors incorporating such nucleic acid molecules, comprising polynucleotides encoding fluorescent protein circular permutants derived from superfolder GFP, which polynucleotides include an internal cloning site into which a heterologous polynucleotide may be inserted in-frame with the circular permutant coding sequence, and which when expressed are capable of reporting on the degree to which a polypeptide encoded by such an inserted heterologous polynucleotide is correctly folded by correlation with the degree of fluorescence exhibited.
    Type: Grant
    Filed: June 24, 2008
    Date of Patent: June 14, 2011
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 7955821
    Abstract: The invention provides a protein labeling and detection system based on self-complementing fragments of fluorescent and chromophoric proteins. The system of the invention is exemplified with various combinations of self-complementing fragments derived from Aequorea victoria Green Fluorescent Protein (GFP), which are used to detect and quantify protein solubility in multiple assay formats, both in vitro and in vivo.
    Type: Grant
    Filed: October 25, 2004
    Date of Patent: June 7, 2011
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Publication number: 20100261267
    Abstract: Provided are methods of assaying and improving protein folding using circular permutants of fluorescent proteins, including circular permutants of GFP variants and combinations thereof. The invention further provides various nucleic acid molecules and vectors incorporating such nucleic acid molecules, comprising polynucleotides encoding fluorescent protein circular permutants derived from superfolder GFP, which polynucleotides include an internal cloning site into which a heterologous polynucleotide may be inserted in-frame with the circular permutant coding sequence, and which when expressed are capable of reporting on the degree to which a polypeptide encoded by such an inserted heterologous polynucleotide is correctly folded by correlation with the degree of fluorescence exhibited.
    Type: Application
    Filed: June 24, 2008
    Publication date: October 14, 2010
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 7666606
    Abstract: The invention provides a protein labeling and interaction detection system based on engineered fragments of fluorescent and chromophoric proteins that require fused interacting polypeptides to drive the association of the fragments, and further are soluble and stable, and do not change the solubility of polypeptides to which they are fused. In one embodiment, a test protein X is fused to a sixteen amino acid fragment of GFP (?-strand 10, amino acids 198-214), engineered to not perturb fusion protein solubility. A second test protein Y is fused to a sixteen amino acid fragment of GFP (?-strand 11, amino acids 215-230), engineered to not perturb fusion protein solubility. When X and Y interact, they bring the GFP strands into proximity, and are detected by complementation with a third GFP fragment consisting of GFP amino acids 1-198 (strands 1-9).
    Type: Grant
    Filed: December 5, 2005
    Date of Patent: February 23, 2010
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 7585636
    Abstract: The invention provides protein subcellular localization assays using split fluorescent protein systems. The assays are conducted in living cells, do not require fixation and washing steps inherent in existing immunostaining and related techniques, and permit rapid, non-invasive, direct visualization of protein localization in living cells. The split fluorescent protein systems used in the practice of the invention generally comprise two or more self-complementing fragments of a fluorescent protein, such as GFP, wherein one or more of the fragments correspond to one or more beta-strand microdomains and are used to “tag” proteins of interest, and a complementary “assay” fragment of the fluorescent protein. Either or both of the fragments may be functionalized with a subcellular targeting sequence enabling it to be expressed in or directed to a particular subcellular compartment (i.e., the nucleus).
    Type: Grant
    Filed: December 5, 2005
    Date of Patent: September 8, 2009
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Publication number: 20090170721
    Abstract: Provided are methods of assaying and improving protein folding using circular permutants of fluorescent proteins, including circular permutants of GFP variants and combinations thereof. The invention further provides various nucleic acid molecules and vectors incorporating such nucleic acid molecules, comprising polynucleotides encoding fluorescent protein circular permutants derived from superfolder GFP, which polynucleotides include an internal cloning site into which a heterologous polynucleotide may be inserted in-frame with the circular permutant coding sequence, and which when expressed are capable of reporting on the degree to which a polypeptide encoded by such an inserted heterologous polynucleotide is correctly folded by correlation with the degree of fluorescence exhibited.
    Type: Application
    Filed: June 24, 2008
    Publication date: July 2, 2009
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Patent number: 7390640
    Abstract: Provided are methods of assaying and improving protein folding using circular permutants of fluorescent proteins, including circular permutants of GFP variants and combinations thereof. The invention further provides various nucleic acid molecules and vectors incorporating such nucleic acid molecules, comprising polynucleotides encoding fluorescent protein circular permutants derived from superfolder GFP, which polynucleotides include an internal cloning site into which a heterologous polynucleotide may be inserted in-frame with the circular permutant coding sequence, and which when expressed are capable of reporting on the degree to which a polypeptide encoded by such an inserted heterologous polynucleotide is correctly folded by correlation with the degree of fluorescence exhibited.
    Type: Grant
    Filed: February 22, 2006
    Date of Patent: June 24, 2008
    Assignee: Los Alamos National Security, LLC
    Inventors: Geoffrey S. Waldo, Stephanie Cabantous
  • Publication number: 20060257942
    Abstract: The invention provides protein subcellular localization assays using split fluorescent protein systems. The assays are conducted in living cells, do not require fixation and washing steps inherent in existing immunostaining and related techniques, and permit rapid, non-invasive, direct visualization of protein localization in living cells. The split fluorescent protein systems used in the practice of the invention generally comprise two or more self-complementing fragments of a fluorescent protein, such as GFP, wherein one or more of the fragments correspond to one or more beta-strand microdomains and are used to “tag” proteins of interest, and a complementary “assay” fragment of the fluorescent protein. Either or both of the fragments may be functionalized with a subcellular targeting sequence enabling it to be expressed in or directed to a particular subcellular compartment (i.e., the nucleus).
    Type: Application
    Filed: December 5, 2005
    Publication date: November 16, 2006
    Inventors: Geoffrey Waldo, Stephanie Cabantous
  • Publication number: 20060257887
    Abstract: The invention provides a protein labeling and interaction detection system based on engineered fragments of fluorescent and chromophoric proteins that require fused interacting polypeptides to drive the association of the fragments, and further are soluble and stable, and do not change the solubility of polypeptides to which they are fused. In one embodiment, a test protein X is fused to a sixteen amino acid fragment of GFP (?-strand 10, amino acids 198-214), engineered to not perturb fusion protein solubility. A second test protein Y is fused to a sixteen amino acid fragment of GFP (?-strand 11, amino acids 215-230), engineered to not perturb fusion protein solubility. When X and Y interact, they bring the GFP strands into proximity, and are detected by complementation with a third GFP fragment consisting of GFP amino acids 1-198 (strands 1-9).
    Type: Application
    Filed: December 5, 2005
    Publication date: November 16, 2006
    Inventors: Geoffrey Waldo, Stephanie Cabantous