Project Grant R44GM134737
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training program (CFDA 93.859), provides $202,274 to develop an easy-to-use computer program for predicting the structure and degrading efficiency of proteolysis targeting chimeras (PROTACs). PROTACs are heterobifunctional molecules that induce the degradation of target proteins by recruiting them to E3 ubiquitin ligases. The awarded project aims to implement a...
- This Project Grant award from the National Science Foundation (CFDA 47.084 - NSF Technology, Innovation, and Partnerships program) provides $275,000 to Ubiquitx Inc., a New York-based small business, to develop a programmable, modular therapeutic platform for the direct modification of proteins of interest (POIs) using artificial intelligence, protein engineering, and mRNA therapeutics. The goal is to expand the applications of the company's Chimeric Ligands for Induced Proximity (CLIPS)...
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training program (CFDA 93.859), provides $528,129 to the University of Connecticut Health Center (UCHC) to structurally and functionally characterize critical ubiquitinating and de-ubiquitinating enzymes implicated in human diseases. The overarching goal is to develop a detailed understanding of how the ubiquitin-proteasome pathway (UPP) components recognize...
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training program (CFDA 93.859), focuses on developing a new class of proteolysis targeting chimeras (PROTACs) aimed at degrading Poly (ADP-ribose) Polymerase-1 (PARP-1) in diseased human cells. The $151,000 award to the Research Foundation of the City University of New York (RFCUNY) - Queens College will be used to design a library of PARP-1-targeting PROTACs and...
- This Project Grant award from the National Science Foundation (NSF) under its Technology, Innovation, and Partnerships (TIP) program (CFDA 47.084) provides $275,000 to Tectaria Bio LLC to engineer cell lines with activated proteasomes for increased biomanufacturing efficiency. The project aims to test the feasibility and application of a novel technology to significantly increase the protein production capabilities of cell lines used in the manufacture of biologics, gene therapies, and vaccines....
- The U.S. National Science Foundation (NSF) awarded a $303,864 Phase I Small Business Innovation Research (SBIR) grant under the NSF Technology, Innovation, and Partnerships (CFDA 47.084) program to Core Biotherapeutics, Inc. (UEI N9FGZ15RQGJ4) located in Ladera Ranch, CA. The project aims to develop a platform for discovering therapeutic drug candidates that can modulate molecular networks driving diseases, with the potential to produce disease-modifying effects for neurodegenerative...
- This Project Grant award of $404,032 from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training program (CFDA 93.859), aims to develop a machine learning-powered platform for the discovery of peptide ligands for peptide-drug conjugates (PDCs). The key objective is to create a next-generation peptide discovery system capable of identifying PDC leads within 3 months. The platform will utilize a peptide array designed for enhanced protease...
- The National Institute of General Medical Sciences (NIGMS) awarded a $306,872 Project Grant under the Biomedical Research and Research Training program (CFDA 93.859) to Fluid Discovery, Inc., a San Francisco-based biotechnology company, to develop a "Universal Platform for Ultrahigh-Throughput Biocatalyst Evolution with Micro-Mass Spectrometry." The award supports the development of a commercial prototype for Fluid Discovery's novel screening platform, which combines scalable hardware,...
- This Project Grant award, titled "SYNTHESIS AND EVALUATION OF PROTACS TO ENABLE RAD52 DEGRADATION FOR OVARIAN CANCER THERAPY: A SYNTHETIC LETHALITY APPROACH," was provided by the Defense Health Agency under the Military Medical Research and Development federal grant program (CFDA 12.420). The award, totaling $695,250.00, will fund research conducted by the University of Nebraska Medical Center (UNMC) from July 1, 2025, to June 30, 2028. The project aims to synthesize and evaluate...
- This Phase 1 SBIR Project Grant, awarded by the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859), provides $306,872 to Peptiforge, Inc. to establish a platform for rapid development of therapeutic protein binders. The grant aims to synthesize test libraries of therapeutic protein scaffolds and evaluate the feasibility of Peptiforge's platform for accelerating the discovery of protein binders that can target...
RATIONAL DESIGN OF BIFUNCTIONAL PROTEIN DEGRADER DRUGS - UBIQUITIN (UB) TAGS REGULATE MULTIPLE PROPERTIES AND FUNCTIONS OF PROTEINS IN CELLS. PROTEASOMAL DEGRADATION OF TARGET PROTEINS IS A WELL-ESTABLISHED MEANS WHEREBY THE UB PROTEASOME SYSTEM (UPS) CONTROLS PROTEIN CONTENT. ENZYMES CALLED UB E3 LIGASES CONJUGATE UB TO TARGET PROTEINS BY FORMING AN ISOPEPTIDE BOND BETWEEN THE E- AMINO GROUP OF THE TARGET PROTEIN LYSINE AND THE CARBOXYLATE OF THE C-TERMINAL GLYCINE OF UB. CONJUGATION OF MULTIPLE UBS FORMS POLY-UB CHAINS AT ANY OF ITS SEVEN LYSINES (K), AND K6, K11, K27, K29, K33, K48, AND K63 UB CHAINS HAVING VARIOUS ROLES ARE PRESENT IN ALL TISSUES. RECENTLY, SEVERAL GROUPS DESIGNED SMALL MOLECULES THAT BIND TO AN E3 LIGASE AT ONE END AND A TARGET PROTEIN AT THE OTHER, PHYSICALLY FACILITATING UBIQUITYLATION OF THE TARGET PROTEIN, WHICH IS THEN DEGRADED. THIS HIJACKING OF A LIGASE TO UBIQUITYLATE A DESIRED PROTEIN HAS LAUNCHED A NEW CLASS OF DRUG CALLED PROTACS (PROTEOLYSIS TARGETING CHIMERAS). PROTAC-BASED APPROACHES FOR THERAPEUTICS OFFER SEVERAL ADVANTAGES: 1) SELECTIVE, CATALYTIC DEGRADATION OF THE TARGET; 2) CONVERSION OF WEAK BINDERS INTO SELECTIVE PROTAC DRUGS; 3) DEGRADATION OF OVEREXPRESSED OR MUTANT TARGETS; AND 4) MAXIMAL DEGRADATION FROM LIMITED TARGET ENGAGEMENT. TO DATE, CEREBLON AND VHL LIGASE BINDERS HAVE BEEN MOST COMMONLY USED AS VEHICLES TO UBIQUITYLATE TARGET PROTEINS SUCH AS NUCLEAR RECEPTORS, KINASES, TRANSCRIPTION FACTORS, AND NEURONAL PROTEINS TAU AND A-SYNUCLEIN. A MAJOR PROBLEM HAS HINDERED DEVELOPMENT OF NEW PROTAC DRUGS, HOWEVER. CHEMICAL OPTIMIZATION OF PROTAC MOLECULES DEPENDS ON RAPID EVALUATION OF SYNTHESIZED COMPOUNDS TO GUIDE THE SYNTHETIC STRATEGY FOR PRODUCING DRUG CANDIDATE MOLECULES. ASSAYS CURRENTLY AVAILABLE ARE LABOR INTENSIVE AND DO NOT PROVIDE RESULTS TO THE MEDICINAL CHEMISTS FAST ENOUGH - OFTEN, A WEEK IS REQUIRED. IN PHASE I, A FACILE IN VITRO METHOD EMPLOYING UB LIGASES CEREBLON AND HDM2 WAS DEVELOPED TO SCREEN FOR POTENTIAL PROTAC DRUGS; PROTAC-MEDIATED UBIQUITYLATION OF SELECTED PROTEINS WAS RECAPITULATED IN VITRO IN A WAY THAT MIMICS OBSERVED PROTAC-DEPENDENT UBIQUITINATION AND DEGRADATION OF THESE PROTEINS IN VIVO, ACHIEVING THE AIMS OF PHASE I. IN PHASE II, THE UTILITY OF THIS METHOD WILL BE EXPANDED TO INCLUDE REPRESENTATIVE MEMBERS OF ALL UB LIGASE FAMILIES (CULLIN FAMILIES, RING FINGER LIGASES, HECT FAMILY LIGASES, AND SUMO LIGASE), INCREASING THE BIOCHEMICAL AND CHEMICAL SPACE FOR PROTAC DRUG DISCOVERY. TO SCALE UP PROTAC SCREENS, A MICROTITER PLATE-BASED, HIGH THROUGHPUT METHOD WILL BE ESTABLISHED TO MONITOR IN VITRO PROTAC DRUG DISCOVERY, AND BIOCHEMICAL AND UB MASS SPEC PROTEOMICS WILL BE EMPLOYED TO DEMONSTRATE THAT TARGET PROTEIN LYSINES UBIQUITYLATED IN VITRO ARE CORRELATED WITH IN VIVO PROTAC MEDIATED DEGRADATION OF TARGET PROTEINS. COMMERCIALIZATION OF THE MICROTITER PLATE BASED PROTAC SYSTEM WILL HAVE A MAJOR IMPACT ON ACADEMIC RESEARCH AS WELL AS PROTAC DRUG DISCOVERY.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 9/24/24 | ||
| Not listed | $733.6k | 7/18/22 | ||
| Not listed | $733.6k | 7/18/22 | ||
| Not listed | $1.0m | 3/26/21 | ||
| Not listed | $1.0m | 3/26/21 |