Project Grant R01CA290537
- This $683,472 Project Grant awarded by the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) supports the development of a novel targeted therapy for acute myeloid leukemia (AML). The principal investigators at the University of Cincinnati are conducting preclinical research to evaluate a differentiation-inducing agent (HOSU-53) that targets the mitochondrial enzyme DHODH. The goal is to promote AML cell differentiation, activate the immune system, and induce ferroptosis to...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $544,478 to The University of Texas Southwestern Medical Center to conduct research on "Decoding the Metabolic Routes of Purine Nucleotides in Cancer". The overarching goal is to expand the mechanistic understanding of purine synthesis pathways in tumors and identify new strategies to target purine supply mechanisms for effective cancer treatment. Key research aims include:...
- This Project Grant award from the National Cancer Institute (CFDA 93.398 Cancer Research Manpower) supports research to investigate how inhibition of the ABL kinase enzyme can sensitize small cell lung cancer (SCLC) to metabolic disruptions, leading to cell death. The $165,196 award to Duke University was made on December 1, 2024 and is scheduled for completion by May 31, 2026. The researchers have performed a CRISPR/Cas9 screen to identify combination therapy targets that synergize with the ABL...
- This Project Grant award of $1,291,898 from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) to Emory University supports research to exploit the SAMHD1 protein in directing radiation and immunologic dynamics for improving breast cancer treatment. The key objectives are to: 1) Investigate how SAMHD1 governs resistance to ionizing radiation and impacts the immune response, as SAMHD1 is overexpressed in up to 27% of breast cancers; and 2) Develop a novel strategy for in vivo...
- 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...
- 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...
- The federal Project Grant award titled "Investigating and Targeting NSD2 Mutation-Driven Leukemia Transformation" is funded by the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) in the amount of $484,405.00 with a performance period from September 1, 2025 to August 31, 2030. The grant was awarded to Thomas Jefferson University, doing business as Sidney Kimmel Medical College, a private non-profit academic medical center in Pennsylvania. The project aims to...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $269,280 to the Translational Genomics Research Institute (TGen) to investigate the use of a senescent cell targeted antibody (SIWA318) for improving the efficacy of standard chemotherapy or immune checkpoint inhibitors in preclinical models of pancreatic ductal adenocarcinoma (PDAC). The key products and services to be delivered under this 2-year award include: 1) Determining the...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $458,051 to Temple University to conduct research aimed at understanding and targeting vulnerabilities in small cell lung cancer (SCLC). The key products and services to be delivered under this 4-year award include: Investigating whether low levels of the nuclear structural protein LMNA contribute to the high levels of replication stress observed in SCLC cells, and whether this...
- The National Cancer Institute (NCI) has awarded a $154,400 Project Grant (CFDA 93.396 Cancer Biology Research) to The Broad Institute, Inc. to support research on activating the SLFN12 RNase enzyme's cytotoxic effects against cancer cells. The research aims to determine whether SLFN12 dimerization can induce tRNA-Leu-TAA degradation and cancer cell death, independent of the PDE3A protein. Experiments will test if high SLFN12 expression alone can trigger this cytotoxic response, and whether a...
TARGETING THE PNP - SAMHD1 SYNTHETIC-LETHAL COMBINATION IN CANCER - ABSTRACT THE ENZYMATIC TRANSITION STATE STRUCTURES OF MAMMALIAN PURINE NUCLEOSIDE PHOSPHORYLASES (PNPS) WERE SOLVED EXPERIMENTALLY IN THIS LABORATORY BY A COMBINATION OF INTRINSIC KINETIC ISOTOPE EFFECTS (KIES) AND COMPUTATIONAL QUANTUM CHEMISTRY. THE RESULTING BOND GEOMETRY AND ELECTROSTATIC POTENTIAL MAPS ENABLED THE DESIGN AND SYNTHESIS OF TRANSITION STATE ANALOGS. IMMUCILLIN-H (AKA BCX1777, FORODESINE, MUNDESINE) INHIBITS HUMAN PNP WITH PICOMOLAR AFFINITY. THE PNP BLOCKADE CAUSES DGTP ACCUMULATION AND APOPTOTIC CELL DEATH SPECIFICALLY IN ACTIVATED AND MALIGNANT T CELLS. FORODESINE ENTERED CLINICAL TRIALS AND WAS APPROVED AS AN ORAL THERAPY FOR REFRACTORY OR RELAPSED PERIPHERAL T-CELL LYMPHOMA IN JAPAN IN 2017. APPROXIMATELY 10% OF OTHERWISE REFRACTORY PATIENTS TREATED WITH FORODESINE THERAPY UNDERGO COMPLETE REMISSION. OTHERS SHOW STABLE DISEASE OR NO RESPONSE. GENOMIC ANALYSIS OF FORODESINE RESPONDER VS NON- RESPONDER T-CELLS FROM CANCER PATIENTS REVEALED DRUG EFFICACY INVERSELY PROPORTIONAL TO SAMHD1 EXPRESSION (STERILE ALPHA MOTIF AND HD-DOMAIN-CONTAINING PROTEIN 1). SAMHD1 IS A DNTP TRIPHOSPHOHYDROLASE (DNTP + H2O DNUC + PPPI), PREVENTING DGTP ACCULULATION FROM INDUCING APOPTOSIS IN TARGETED CANCER T CELLS. THEREFORE, THE COMBINATION OF SAMHD1 INHIBITORS WITH FORODESINE IS EXPECTED TO EXTEND THE THERAPEUTIC PROFILE OF HUMAN PNP INHIBITORS, A SYNTHETIC LETHAL INTERACTION. DRUG DESIGN BY TRANSITION STATE ANALYSIS WILL BE EXTENDED TO SAMHD1, A RARE TRIPHOSPHOHYDROLASE ACTIVITY. SAMHD1 INHIBITION HAS POTENTIAL TO ENHANCE T-CELL ANTICANCER OUTCOMES. THE PRIVILIDGED ENZYME-REACTANT GEOMETRY AT THE TRANSTION STATE WILL BE ENLISTED AS ONE INHIBITOR DESIGN ELEMENT. DRUG CANDIDATES DESIGNED TO STABLIZE THE SAMHD1 PROTEIN GEOMETRY AT THE TRANSITION STATE WILL BE POWERFUL INHIBITORS. CHEMICAL SCREENING WITH FRAGMENT LIBRARIES, SOME WITH COVALENT POTENTIAL, COUPLED BY CLICK CHEMISTRIES, WILL BE USED IN COMBINATORIAL INHIBITOR DESIGN AS AN ALTERNATIVE APPROACH. SAMHD1 INHIBITORS, USED IN COMBINATION WITH FORODESINE, ARE EXPECTED TO PROVIDE IMPROVED THERAPEUTIC APPROACHES TO THE SPECTRUM OF T-CELL MALIGNANCIES. SAMHD1 DOCKED TO ITS TRANSITION STATE TO DEFINE THE ENZYMATIC CAVITY AT THE TRANSITION STATE WILL BE USED TO GROW COMPLIMENTARY, PROTEIN-STABILIZING STRUCTURES FROM LIBRARY FRAGMENTS TO MIMIC THE TRANSITION STATE CONFIGURATION. SAMHD1 CONFORMATIONAL TRAPS OF TRANSITION STATE GEOMETRY WILL BE TIGHT-BINDERS. A BRONX-BASED NOVEL PATIENT-DERIVED CANCER T-CELL LIBRARY WILL BE TESTED IN CULTURE AND IN MOUSE XENOGRAFTS WITH SAMHD1 INHIBITORS TO EXPLORE THE SCOPE OF SYNTHETIC LETHAL INTERACTIONS ACROSS GENETICALLY DEFINED HUMAN T-CELL CANCERS. THE PROGRAM WILL BE ACHIEVED WITH SPECIFIC AIMS TO: 1) SOLVE THE TRANSITION STATE STRUCTURE OF SAMHD1 FROM REACTANT AND CATALYTIC SITE PERSPECTIVES, 2) DISCOVER SAMHD1 INHIBITORS BY CONFORMATIONAL TRANSITION STATE STABILIZATION, FRAGMENT SCREENING AND GROWTH INTO THE CATALYTIC SITE CAVITY, STRUCTURAL BIOLOGY APPROACHES AND 3) USE CELL CULTURE AND MOUSE XENOGRAFTS TO CHARACTERIZE THE BIOLOGICAL EFFECTS OF THIS SYNTHETIC LETHAL INTERACTION.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $60.3k | 5/22/25 | ||
| Not listed | $543.0k | 4/15/25 | ||
| Not listed | $543.0k | 4/15/25 | ||
| Not listed | $0 | 5/30/24 | ||
| Not listed | $0 | 5/30/24 |