Patents by Inventor John Hanney MCGEE
John Hanney MCGEE 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).
-
Publication number: 20260207704Abstract: Among other things, the present disclosure provides various useful agents. In some embodiments, provided agents can bind to beta-catenin. In some embodiments, the present disclosure provides technologies for modulating beta-catenin functions. In some embodiments, the present disclosure provides technologies for preventing and/or treating conditions, disorders or diseases associated with beta-catenin. In some embodiments, the present disclosure provides designed amino acids and agents which can provide improved properties and/or activities.Type: ApplicationFiled: December 15, 2023Publication date: July 23, 2026Inventors: Brian Halbert White, Jonathan Barry Hurov, Yaguang Si, Daniel Seungduk La, Lorenzo Josue Alfaro-Lopez, Paula Cristina Ortet, Sarah Isabelle Cappucci, Zhi Li, John Hanney McGee, Martin Robert Tremblay, Gregory L. Verdine, Kevin Ling, Peicheng Du
-
Patent number: 12398178Abstract: The present disclosure provides powerful technologies for the development, production, characterization, and/or use of stapled peptide compositions. Among other things, the present disclosure provides strategies for defining amino acid sequences particularly amenable or useful for stapling, as well as technologies, reagents, and systems for developing, producing, characterizing, and/or using stapled peptides having such amino acid sequences.Type: GrantFiled: August 20, 2019Date of Patent: August 26, 2025Assignee: Parabilis Medicines, Inc.Inventors: John Hanney McGee, Ty Matthew Thomson, Sebastian Christof Theodor Wahl, Gregory L. Verdine, Raheleh Rezaei Araghi, Yue-Mei Zhang, Mark Joseph Mulvihill
-
Publication number: 20240391956Abstract: Among other things, the present disclosure provides various useful agents. In some embodiments, provided agents can bind to MDM2. In some embodiments, provided agents can bind to CHIP. In some embodiments, the present disclosure provides technologies for modulating MDM2 functions. In some embodiments, the present disclosure provides technologies for modulating CHIP functions. In some embodiments, the present disclosure provides technologies for preventing or treating conditions, disorders or diseases.Type: ApplicationFiled: January 30, 2024Publication date: November 28, 2024Inventors: Olena Tokareva, Kunhua Li, Tara Lynne Travaline, John Hanney McGee
-
Publication number: 20240376151Abstract: The present disclosure provides powerful technologies for the development, production, characterization, and/or use of stapled peptide compositions. Among other things, the present disclosure provides strategies for defining amino acid sequences particularly amenable or useful for stapling, as well as technologies, reagents, and systems for developing, producing, characterizing, and/or using stapled peptides having such amino acid sequences. In some embodiments, the present disclosure provides stapled peptide agents and uses thereof including for treating various conditions, disorders or diseases.Type: ApplicationFiled: October 30, 2023Publication date: November 14, 2024Inventors: Olena Tokareva, Justin Robert Lawrie, Kunhua Li, Tara Lynne Travaline, Jean-Marie Swiecicki, Gregory L. Verdine, John Hanney McGee, Ty Matthew Thomson
-
Publication number: 20240360179Abstract: Among other things, the present disclosure provides various useful agents. In some embodiments, provided agents can bind to beta-catenin. In some embodiments, the present disclosure provides technologies for modulating beta-catenin functions. In some embodiments, the present disclosure provides technologies for preventing and/or treating conditions, disorders or diseases associated with beta-catenin. In some embodiments, the present disclosure provides designed amino acids and agents which can provide improved properties and/or activities.Type: ApplicationFiled: June 8, 2022Publication date: October 31, 2024Inventors: Brian Halbert White, Daniel Seungduk La, Lorenzo Josue Alfaro-Lopez, Paula Cristina Ortet, Sarah Isabelle Cappucci, Zhi Li, John Hanney McGee, Martin Robert Tremblay, Gregory L. Verdine, Yaguang Si, Kevin Ling, Peicheng Du, Jonathan Barry Hurov
-
Publication number: 20240116985Abstract: Among other things, the present disclosure provides various agents. In some embodiments, provided agents can bind to beta-catenin. In some embodiments, the present disclosure provides technologies for modulating beta-catenin functions. In some embodiments, the present disclosure provides technologies for preventing and/or treating conditions, disorders or diseases associated with beta-catenin. In some embodiments, the present disclosure provides designed amino acids which can provide improved properties and/or activities. In some embodiments, the present disclosure provides agents comprising such amino acids.Type: ApplicationFiled: July 22, 2021Publication date: April 11, 2024Inventors: Brian Halbert White, Yaguang Si, Martin Robert Tremblay, Deborah Gail Conrady, Yue-Mei Zhang, Ivan Tucker Jewett, Lorenzo Josue Alfaro-Lopez, Sarah Isabelle Cappucci, Zhi Li, John Hanney McGee
-
Patent number: 11834482Abstract: Among other things, the present disclosure provides technologies for modulating functions of beta-catenin. In some embodiments, the present disclosure provides stapled peptides that interact with beta-catenin. In some embodiments, provided stapled peptides interact with beta-catenin at an Axin-binding site of beta-catenin. In some embodiments, the present disclosure provides compounds, compositions and methods for preventing and/or treating conditions, disorders and diseases that are associated with beta-catenin.Type: GrantFiled: November 3, 2021Date of Patent: December 5, 2023Assignee: FOG PHARMACEUTICALS, INC.Inventors: Gerard Hilinski, So Youn Shim, Matthew Reiser Patton, John Hanney McGee, Paula Cristina Ortet, Gregory L Verdine
-
Publication number: 20230357320Abstract: In some embodiments, the present disclosure provides stapled peptides and compositions thereof. In some embodiments, provided peptides can bind to and modulate functions of estrogen receptor.Type: ApplicationFiled: March 17, 2021Publication date: November 9, 2023Inventors: Gregory L. Verdine, John Hanney McGee, Santosh Kumar Choudary, Yue-Mei Zhang, Martin Robert Tremblay
-
Publication number: 20230137773Abstract: The present invention provides peptides comprising a sequence of X-6X-5X-4X-3X-2X-1X1PX3X4PX6X7PGX10X11AX13X14X15X16LX18X19X20X21X22X23LX25X26YLX29X30X31X32 wherein the amino acids X-6, X-5, X-4, X-3, X-2, X-1, X1, X3, X4, X6, X7, X10, X11, X13, X14, X15, X16, X18, X19, X20, X21, X22, X25, X26, X29, X30, X31, and X32 are as defined herein. The present invention further provides pharmaceutical compositions comprising the peptides and methods of using the peptides for treating proliferative diseases such as cancer which are associated with Ras. Also provided are methods of screening a library of peptide dimers using a peptide dimer display technology.Type: ApplicationFiled: May 23, 2022Publication date: May 4, 2023Inventors: Gregory L. VERDINE, John Hanney MCGEE
-
Publication number: 20230046728Abstract: In some embodiments, the invention relates to methods and reagents for the identification of compounds that traverse he cell membrane of an animal cell. In some embodiments, the invention provides additional methods for determining if a candidate compound that traverses an animal cell membrane is able to modulate an intracellular target, as well as reagents and kits for reagents and kits for performing the disclosed methods.Type: ApplicationFiled: December 11, 2020Publication date: February 16, 2023Inventors: Amrita Singh Chandhoke, James Andrew Madsen, Yue-Mei Zhang, John Hanney McGee, Marco Peter Fekkes
-
Publication number: 20220213154Abstract: Among other things, the present disclosure provides technologies for modulating functions of beta-catenin. In some embodiments, the present disclosure provides stapled peptides that interact with beta-catenin. In some embodiments, provided stapled peptides interact with beta-catenin at an Axin-binding site of beta-catenin. In some embodiments, the present disclosure provides compounds, compositions and methods for preventing and/or treating conditions, disorders and diseases that are associated with beta-catenin.Type: ApplicationFiled: November 3, 2021Publication date: July 7, 2022Inventors: Gerard Hilinski, So Youn Shim, Matthew Reiser Patton, John Hanney McGee, Paula Cristina Ortet, Gregory L. Verdine
-
Patent number: 11377476Abstract: The present invention provides peptides comprising a sequence of X-6X-5X-4X-3X-2X-1X1PX3X4PX6X7PGX10X11AX13X14X15X16LX18X19X20X21X22X23LX25X26YLX29X30X31X32 (SEQ ID NO: 13) wherein the amino acids X?6, X?5, X?4, X?3, X?2, X?1, X1, X3, X4, X6, X7, X10, X11, X13, X14, X15, X16, X18, X19, X20, X21, X22, X25, X26, X29, X30, X31, and X32 are as defined herein. The present invention further provides pharmaceutical compositions comprising the peptides and methods of using the peptides for treating proliferative diseases such as cancer which are associated with Ras. Also provided are methods of screening a library of peptide dimers using a peptide dimer display technology.Type: GrantFiled: November 26, 2019Date of Patent: July 5, 2022Assignee: President and Fellows of Harvard CollegeInventors: Gregory L. Verdine, John Hanney McGee
-
Patent number: 11198713Abstract: Among other things, the present disclosure provides technologies for modulating functions of beta-catenin. In some embodiments, the present disclosure provides stapled peptides that interact with beta-catenin. In some embodiments, provided stapled peptides interact with beta-catenin at an Axin-binding site of beta-catenin. In some embodiments, the present disclosure provides compounds, compositions and methods for preventing and/or treating conditions, disorders and diseases that are associated with beta-catenin.Type: GrantFiled: September 7, 2018Date of Patent: December 14, 2021Assignee: FOG PHARMACEUTICALS, INC.Inventors: Gerard Hilinski, So Youn Shim, Matthew Reiser Patton, John Hanney McGee, Paula Ortet, Gregory L. Verdine
-
Publication number: 20210179665Abstract: The present disclosure provides powerful technologies for the development, production, characterization, and/or use of stapled peptide compositions. Among other things, the present disclosure provides strategies for defining amino acid sequences particularly amenable or useful for stapling, as well as technologies, reagents, and systems for developing, producing, characterizing, and/or using stapled peptides having such amino acid sequences.Type: ApplicationFiled: August 20, 2019Publication date: June 17, 2021Inventors: John Hanney McGee, Ty Matthew Thomson, Sebastian Christof Theodor Wahl, Gregory L. Verdine, Raheleh Rezaei Araghi, Yue-Mei Zhang, Mark Joseph Mulvihill
-
Publication number: 20200247858Abstract: Among other things, the present disclosure provides technologies for modulating functions of beta-catenin. In some embodiments, the present disclosure provides stapled peptides that interact with beta-catenin. In some embodiments, provided stapled peptides interact with beta-catenin at an Axin-binding site of beta-catenin. In some embodiments, the present disclosure provides compounds, compositions and methods for preventing and/or treating conditions, disorders and diseases that are associated with beta-catenin.Type: ApplicationFiled: September 7, 2018Publication date: August 6, 2020Applicant: FOG PHARMACEUTICALS, INC.Inventors: Gerard Hilinski, So Youn Shim, Matthew Reiser Patton, John Hanney McGee, Paula Ortet, Gregory L. Verdine
-
Publication number: 20200239533Abstract: The present invention provides peptides comprising a sequence of X-6X-5X-4X-3X-2X-1X1PX3X4PX6X7PGX10X11AX13X14X15X16LX18X19X20X21X22X23LX25X26YLX29X30X31X32 (SEQ ID NO: 13) wherein the amino acids X?6, X?5, X?4, X?3, X?2, X?1, X1, X3, X4, X6, X7, X10, X11, X13, X14, X15, X16, X18, X19, X20, X21, X22, X25, X26, X29, X30, X31, and X32 are as defined herein. The present invention further provides pharmaceutical compositions comprising the peptides and methods of using the peptides for treating proliferative diseases such as cancer which are associated with Ras. Also provided are methods of screening a library of peptide dimers using a peptide dimer display technology.Type: ApplicationFiled: November 26, 2019Publication date: July 30, 2020Inventors: Gregory L. VERDINE, John Hanney MCGEE
-
Patent number: 10533039Abstract: The present invention provides peptides comprising a sequence of X?6X?5X?4X?3X?2X?1X1PX3X4PX6X7PGX10X11AX13X14X15X16LX18X19X20X21X22X23LX25X26 YLX29X30X31X32 (SEQ ID NO: 13) wherein the amino acids X?6, X?5, X?4, X?3, X?2, X?1, X1, X3, X4, X6, X7, X10, X11, X13, X14, X15, X16, X18, X19, X20, X21, X22, X25, X26, X29, X30, X31, and X32 are as defined herein. The present invention further provides pharmaceutical compositions comprising the peptides and methods of using the peptides for treating proliferative diseases such as cancer which are associated with Ras. Also provided are methods of screening a library of peptide dimers using a peptide dimer display technology.Type: GrantFiled: May 21, 2015Date of Patent: January 14, 2020Assignee: President and Fellows of Harvard CollegeInventors: Gregory L. Verdine, John Hanney McGee
-
Publication number: 20170240604Abstract: The present invention provides peptides comprising a sequence of X-6X-5X-4X-3X-2X-1X1PX3X4PX6X7P-GX10X11AX13X14X15X16LX18X19X20X21X22X23LX25X26YLX29X30X31X32 wherein the amino acids X-6, X-5, X-4X-3, X-2, X-1, X1, X3, X4, X6, X7, X10, X11, X13, X14, X15, X16, X18, X19, X20, X21, X22, X25, X26, X29, X30, X31, and X32 are as defined herein. The present invention further provides pharmaceutical compositions comprising the peptides and methods of using the peptides. Also provided are methods of screening a library of peptide dimers using a peptide dimer display technology.Type: ApplicationFiled: May 21, 2015Publication date: August 24, 2017Inventors: Gregory L. VERDINE, John Hanney MCGEE