Project Grant DP2CA280626
- The National Cancer Institute (NCI) awarded a $151,000 Project Grant under the Cancer Cause and Prevention Research (CFDA 93.393) program to The Medical University of South Carolina (MUSC) to investigate the role of polyploid cancer cells in high-grade serous ovarian carcinoma (HGSOC). The project aims to: 1) Define essential genes for the polyploid cancer cell lifecycle and its critical transition stages using CRISPR-Cas9 screening, and 2) Determine the expression of putative polyploid cancer...
- The Department of Health and Human Services, National Institutes of Health, National Cancer Institute awarded a 5-year, $378,405 Project Grant to Oregon Health & Science University (OHSU) under the 21st Century Cures Act - Beau Biden Cancer Moonshot program (CFDA 93.353). The grant will fund research to characterize the nuclear pore complex protein NUP205 as a haploinsufficient essential gene that contributes to hematopoietic (blood cell) malignancies associated with chromosome 7 deletion or...
- The National Cancer Institute (NCI) awarded The Ohio State University a $1.379 million Project Grant under the Cancer Treatment Research program (CFDA 93.395) effective April 1, 2025, through August 31, 2030. This research initiative focuses on developing novel therapeutic strategies targeting ferroptosis—a form of programmed cell death—in aggressive subtypes of non-small cell lung cancer (NSCLC) characterized by concurrent STK11 and KEAP1 mutations. The project addresses a critical clinical...
- The National Cancer Institute awarded Massachusetts General Hospital (MGH) a Project Grant totaling $744,575 under the Cancer Cause and Prevention Research program (CFDA 93.393) on May 16, 2025, with performance through April 30, 2030. The grant supports research to define the genomic and biologic impact of LINE-1 (Long Interspersed Element-1) activity in fallopian tube epithelial cells and its contribution to high-grade serous ovarian cancer (HGSOC) pathogenesis. The research will investigate...
- Federal Project Grant Award Summary Weill Medical College of Cornell University received a $148,050 Project Grant from the National Cancer Institute under the Cancer Research Manpower program (CFDA 93.398) awarded on September 26, 2025, with completion targeted for April 6, 2027. This award supports research training and investigation into genomic instability mechanisms in lung cancer, specifically examining the role of the APOBEC3 (A3) family of cytosine deaminases in somatic mutagenesis. The...
- This Project Grant award from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) provides $514,405.00 in funding to Sanford Research to investigate the roles of cancer-dependent skeletal genes and pathways in the development and progression of osteosarcoma, a deadly bone cancer that primarily affects children. The research aims to elucidate the cancer dependency pathways involving the tumor protein p53 and Notch signaling that regulate premalignant osteoblasts and the...
- The National Cancer Institute (NCI) awarded a $402,400 Project Grant to the University of California, Santa Barbara under the Cancer Biology Research program (CFDA 93.396) for the period of September 1, 2025 through August 31, 2027. The project, titled "Dissecting the Structure-Function Relationship of the Wnt Destruction Complex Condensate," will deliver fundamental research aimed at understanding the molecular organization and biological mechanisms of the destruction complex (DC),...
- The University of Utah received a $154,000 Project Grant from the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395) awarded August 1, 2025, with completion scheduled for July 31, 2027. This technology-oriented project will develop a novel dual-recombinase system termed "FLP-OUT" designed to enable single-cell genetic modeling of pancreatic ductal adenocarcinoma (PDAC) initiation in mice. The deliverables include creation of a FLP-OUT mouse model...
- This $3.3 million project grant from the National Cancer Institute's Cancer Cause and Prevention Research program (CFDA 93.393) supports research to identify prediagnostic exposures, germline genetics, and immune and mutational profiles associated with triple negative breast cancer (TNBC). Joan & Sanford I Weill Medical College of Cornell University is the primary awardee and will perform whole exome sequencing of tumor and germline DNA from 400 TNBC patients across four prospective cohort...
- Cincinnati Children's Hospital Medical Center received a $530,106 Project Grant award from the National Cancer Institute (NCI) under the Cancer Biology Research program (CFDA 93.396), effective September 11, 2025, with completion targeted for August 31, 2030. The award supports fundamental research to identify and mechanistically interrogate polyamine metabolism in leukemia stem cells (LSCs) isolated from patients with relapsed acute myeloid leukemia (AML). The research aims to develop...
TUMOR SUPPRESSOR VULNERABILITY CONFERRED BY ANEUPLOID LOSS OF HAPLOINSUFFICIENT METALLOTHIONEIN GENES - ABSTRACT CANCER WILL RARELY BE CURED THROUGH PHARMACOLOGIC TARGETING OF SINGLE GENES. TUMORS EVOLVE IN RESPONSE TO SELECTION PRESSURE. PRECISION ONCOLOGY OFTEN TARGETS A SINGLE GENE PRODUCT, AND THAT GENE SIMPLY BECOMES MUTATED ONCE THE DRUG IS ADMINISTERED. ALTHOUGH INDIVIDUAL GENES MAY MUTATE, TUMOR BIOLOGY IS NONETHELESS CONSTRAINED TO DYSREGULATING SPECIFIC PATHWAYS FOR EACH CANCER TYPE. WE HAVE PREVIOUSLY CREATED CUTTING-EDGE BIOINFORMATIC TOOLS TO BETTER UNDERSTAND WHICH CONSTRAINED PATHWAYS ARE ACTING AS TUMOR SUPPRESSORS AND ONCOGENES, DUE TO COLLABORATIVE GENE DYSREGULATION AT THE MOLECULAR PATHWAY LEVEL. ANEUPLOIDY IS A MAJOR CAUSE OF MOLECULAR PATHWAY CHANGES IN CANCER AND UNFORTUNATELY EACH ANEUPLOID EVENT ALTERS BOTH PREDICTED DRIVER GENES AND UNKNOWN PASSENGER GENES. INVESTIGATION OF CAUSAL ANEUPLOID CHANGES IN A TUMOR REMAINS DIFFICULT, IF NOT IMPOSSIBLE, TO STUDY WITH CURRENT CELL BIOLOGY AND GENETIC TOOLS. HOWEVER, WE HAVE DISCOVERED A UNIQUE, COMMONLY SUPPRESSED (70% OF HIGH-GRADE SEROUS OVARIAN CANCERS HAVE A MONOALLELIC LOSS, CORRELATING WITH AVERAGE REDUCED EXPRESSION), PATHWAY WHICH IS AMENABLE TO WELL-CONTROLLED BASIC SCIENCE EXPERIMENTATION: THE CADMIUM RESPONSE PATHWAY. IT IS COMPOSED OF 11 HIGHLY HOMOLOGOUS METALLOTHIONEIN GENES ARRAYED ON A SINGLE CHROMOSOMAL LOCUS. METALLOTHIONEINS SEQUESTER THE BULK OF INTRACELLULAR ZN2+ AND ENVIRONMENTAL GENOTOXIC CD2+ IONS. THE LOSS OF THE METALLOTHIONEIN LOCUS IS ASSOCIATED WITH CHROMOSOME INSTABILITY AND OCCURS EARLY IN TUMOR FORMATION. OUR IN VITRO ASSAYS SHOW CONTROLLED METALLOTHIONEIN SUPPRESSION RESULTS IN ELEVATED DNA DAMAGE. HOWEVER, THE ROLE OF METALLOTHIONEINS AS TUMOR SUPPRESSORS AND AS REGULATORS OF CANCER CELLULAR AND MOLECULAR BIOLOGY IS LARGELY UNKNOWN. THIS PROJECT WILL ESTABLISH SPECIFIC TUMOR SUPPRESSOR PHENOTYPES OF METALLOTHIONEINS IN OVARIAN CANCER AND DETERMINE IF THIS ANEUPLOID PATHWAY WILL SERVE AS A REPRESENTATIVE EXAMPLE OF HOW MULTI- GENIC VULNERABILITIES CAN BETTER ENABLE NEXT-GENERATION CANCER THERAPIES. WE WILL (1) CHARACTERIZE IN VIVO THE EFFECTS OF METALLOTHIONEIN GENE LOSS IN SPONTANEOUS TUMOR FORMATION IN OVARIAN CANCER, (2) DEVELOP CONTROLLED MODELS OF GENE SUPPRESSION ENABLING SUPPRESSION OF ALL 11 GENES, INCLUDING BY A SYNTHETIC DEAD-CAS9-BASED TRANSCRIPTION FACTOR, (3) DETERMINE WHICH CADMIUM-DEPENDENT AND CADMIUM-INDEPENDENT METALLOTHIONEIN- REGULATED MOLECULAR PATHWAYS CONVEY TUMOR SUPPRESSOR FUNCTIONS, AND (4) DISCOVER DRUG CLASSES WHICH BEST SELECTIVELY KILL LOW-METALLOTHIONEIN CELLS. GENETIC TOOLS CREATED BY THIS PROJECT WILL ENABLE CAUSAL INVESTIGATION OF ENTIRE MOLECULAR PATHWAYS FOR FUTURE PROJECTS. TAKEN TOGETHER, THIS INNOVATIVE RESEARCH PROGRAM WILL DIRECTLY TEST HOW AN UNCHARACTERIZED ANEUPLOID-SUPPRESSED PATHWAY CONTRIBUTES TO ONCOGENESIS AND REMAINS A PHARMACOLOGICALLY TARGETABLE VULNERABILITY THROUGHOUT TUMOR DEVELOPMENT.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 1/2/26 | ||
| Not listed | $906.0k | 8/26/25 | ||
| Not listed | $906.0k | 8/26/25 | ||
| Not listed | $0 | 9/1/22 | ||
| Not listed | $0 | 9/1/22 |