Project Grant R01CA293188
- This Project Grant from the National Institutes of Health's National Cancer Institute, under the Cancer Biology Research program (CFDA 93.396), provides $900,000 to Midwestern University from September 2022 through August 2025. The grant funds research to characterize novel protein-protein interactions within Polycomb Repressive Complex 1 (PRC1) and investigate their role in the selective assembly of functionally distinct PRC1 complexes. PRC1 epigenetically regulates chromatin and improper...
- The National Cancer Institute (NCI) awarded a $768,437 project grant under the Cancer Treatment Research program (CFDA 93.395) to the Sanford Burnham Prebys Medical Discovery Institute (SBP) to implement high-throughput screening assays to identify chemical compounds that inhibit the chromatin reader protein SGF29. This target is of interest as it has been identified as a regulator of oncogenic transcription factors aberrantly activated in acute myeloid leukemia (AML), a disease with poor...
- The U.S. National Cancer Institute awarded a $429,123 Project Grant to Purdue University under the Cancer Treatment Research federal grant program (CFDA 93.395) to develop improved inhibitors that selectively target the CBX8 chromatin reader domain. This research aims to address the mis-regulation of chromatin, which drives cancer progression and chemotherapy resistance. The project will focus on developing CBX8-selective inhibitors using DNA-encoded libraries and validating the selective...
- This Project Grant award of $147,486 was provided by the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training federal grant program (CFDA 93.859), to The Trustees of the University of Pennsylvania for the period of January 1, 2025 to June 30, 2026. The goal of this research project is to investigate the distinct molecular roles of Polycomb Repressive Complexes 1 and 2 (PRC1 and PRC2) and upstream factors in establishing silencing at...
- This $483,395 Project Grant award from the National Cancer Institute's Cancer Treatment Research program (CFDA 93.395) supports research by The Institute For Cancer Research (ICR) to investigate targeting the P300/CBP proteins as a novel therapeutic approach for renal cell carcinoma (RCC). The key objectives are to examine the therapeutic potential of inhibiting P300/CBP in clear cell RCC, and establish the association between P300/CBP expression and disease progression, drug-resistance, and...
- This Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS), under the Extramural Research Programs in the Neurosciences and Neurological Disorders (CFDA 93.853) program, aims to develop novel small molecule inhibitors targeting the MBD2 protein for epigenetic therapy of medulloblastoma (MB), a common and aggressive pediatric brain cancer. The $564,045 award supports medicinal chemistry optimization of a lead compound, KCC07, which has shown promise in...
- This $398,728 Project Grant awarded by the National Cancer Institute (NCI) under the Cancer Treatment Research program (CFDA 93.395) supports the development of a novel homologous recombination (HR) inhibitor, CP-8, to sensitize triple-negative breast cancer (TNBC) cells to DNA-damaging agents. The project aims to examine the synergy of CP-8 with various DNA-damaging therapies, including PARP inhibitors and ionizing radiation, in TNBC cell lines, patient-derived xenograft models, and in vivo...
- This Project Grant award from the National Cancer Institute (CFDA 93.393 - Cancer Cause and Prevention Research) for $687,679 aims to functionally characterize the transcriptional regulatory landscape of hepatocellular carcinoma (HCC) in order to uncover novel tumor cell-intrinsic vulnerabilities. The research plan involves computationally establishing human HCC transcriptional master regulators (TMRs), validating their tumor cell-intrinsic functions using CRISPR interference and activation...
- The National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) awarded a $230,711 project grant to The Trustees of Columbia University in the City of New York, Health Sciences Division, to conduct research on overcoming resistance to hedgehog inhibitor treatments in basal cell carcinomas. The 2-year project aims to elucidate the role of the BRD9 chromatin remodeling complex in promoting an immunosuppressive tumor microenvironment that drives resistance to hedgehog-targeted therapies....
- 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 $125,000 to the Dana-Farber Cancer Institute, Inc. to conduct research on transcriptional regulation by the ZMYM2-KDM1A-CoREST complex. The goal of this 2-year project (12/18/2024 - 11/30/2026) is to gain a structural understanding of how the ZMYM2 transcription factor recruits the KDM1A-CoREST chromatin modifying complex to...
DISCOVERY OF SMALL MOLECULES TARGETING POLYCOMB REPRESSIVE COMPLEXES 1 AND 2 - DISCOVERY OF SMALL MOLECULES TARGETING POLYCOMB REPRESSIVE COMPLEX 1 ABSTRACT: THE DISCOVERY THAT MUTATIONS AND DYSREGULATION OF CHROMATIN MODIFIERS ARE MAJOR CANCER DRIVERS HAS INSPIRED INCREASED PHARMACEUTICAL EFFORTS TO IDENTIFY SPECIFIC INHIBITORS. POLYCOMB REPRESSIVE COMPLEX 1 (PRC1) AND PRC2 ARE CHROMATIN REGULATORS THAT MEDIATE TRANSCRIPTIONAL SILENCING TO MAINTAIN CELLULAR IDENTITY. THE PRC2 SUBUNIT EZH2 CATALYZES HISTONE H3 LYSINE 27 METHYLATION (H3K27ME1/2/3). ACTING IMMEDIATELY DOWNSTREAM, CANONICAL PRC1 (CPRC1) SPECIFICALLY RECOGNIZES H3K27ME3 VIA ITS SPECIFIC CHROMOBOX (CBX) DOMAIN SUBUNITS AND ENFORCES REPRESSION OF PRC2 TARGET GENES BY CHROMATIN COMPACTION AND 3D LOOPING. NOTABLY, NON-CANONICAL PRC1 (NCPRC1) WHICH LACKS CBX PROTEINS AND SOME CPRC1 COMPLEXES CAN BE RECRUITED AND MEDIATE REPRESSION INDEPENDENTLY OF H3K27ME3, BUT THE MECHANISMS ARE POORLY UNDERSTOOD. EZH2 IS OVEREXPRESSED OR HYPERACTIVE IN 1-2% OF ALL CANCERS AND CATALYTIC INHIBITORS SUCH AS TAZEMETOSTAT, AIMED AT BLOCKING CPRC1-DEPENDENT GENE REPRESSION, WERE RECENTLY FDA-APPROVED FOR TREATMENT OF EZH2-MUTANT B- CELL LYMPHOMAS AND SMARCB1/INI1-MUTANT SARCOMAS. HOWEVER, THERE IS MOUNTING EVIDENCE THAT SOME EZH2- DEPENDENT CANCERS ARE ONLY PARTIALLY DEPENDENT ON ITS CATALYTIC ACTIVITY FOR CPRC1-DEPENDENT REPRESSION, WHICH EXPLAINS WHY INHIBITORS LIKE TAZEMETOSTAT CAN HAVE LIMITED EFFICACY. MOREOVER, SINCE EZH2 HAS WELL-KNOWN TUMOR SUPPRESSIVE ROLES IN SOME TISSUES, THERE ARE CONCERNS THAT ITS INHIBITION COULD CAUSE SECONDARY CANCERS. THUS, NEW APPROACHES AND THERAPEUTIC TARGETS ARE URGENTLY NEEDED FOR TREATMENT OF EZH2-DEPENDENT CANCERS. WE SEEK TO DIRECTLY TARGET CPRC1 COMPLEXES, A THERAPEUTIC STRATEGY THAT HAS BEEN MOSTLY UNEXPLORED. WE HYPOTHESIZE THAT SMALL MOLECULES TARGETING CPRC1 SUBUNITS THAT ACT DOWNSTREAM OR INDEPENDENT OF EZH2'S H3K27 METHYLTRANSFERASE ACTIVITY WILL FACILITATE MECHANISTIC INSIGHTS INTRACTABLE WITH CONVENTIONAL GENETIC TOOLS AND REVEAL NEW INTERVENTION POINTS FOR THERAPY, POTENTIALLY PROVIDING A MEANS TO OVERCOME CURRENT LIMITATIONS OF CATALYTIC INHIBITION. THE OVERARCHING OBJECTIVE OF THIS PROGRAM IS TO IDENTIFY DIVERSE SMALL MOLECULES WITH ACTIVITY AGAINST CPRC1 AND TO DETERMINE THEIR MECHANISMS OF ACTION. TO ACHIEVE THIS, WE HAVE DEVELOPED A SENSITIVE, HTS-COMPATIBLE CPRC1/PRC2 LUMINESCENT REPORTER ASSAY, COMPLEMENTED BY PUBLISHED SECONDARY AND TERTIARY ORTHOGONAL ASSAYS WHICH ALREADY YIELDED A CONFIRMED HIT COMPOUND WITH ACTIVITY AGAINST CPRC1/PRC2 DOWNSTREAM OR INDEPENDENT OF H3K27ME3. SUCCESSFUL IDENTIFICATION OF SMALL MOLECULES CAN CATALYZE MECHANISTIC EXPLORATION AND ENABLE ASSESSMENT OF PRECLINICAL TARGET VALIDITY, THEREFORE ADVANCING INNOVATIVE BASIC CHROMATIN RESEARCH AND LEADING TO IMPACTFUL TRANSLATIONAL STUDIES, HIGHLY RELEVANT FOR EZH2-DEPENDENT CANCERS. 1
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $469.7k | 7/16/25 | ||
| Not listed | $563.7k | 7/26/24 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
SCON00007054S | Sanford Burnham Prebys Medical Discovery Institute | Project Grant R01CA293188 | $291.2k | 10/18/24 |