Project Grant R01CA290034
- This $627,422 Project Grant award from the National Cancer Institute under the Cancer Treatment Research (CFDA 93.395) program supports research by the Regents of the University of Michigan to engineer commensal bacteria that can neutralize the colibactin genotoxin produced by certain gut bacteria associated with increased colorectal cancer risk. The key products and services to be delivered under this 5-year grant include: 1) Further optimization of the surface display of the anti-toxin...
- The federal Project Grant award of $600,499.00 was provided by the National Cancer Institute (NCI) under the Cancer Biology Research program (CFDA 93.396). The award supports research conducted by the Trustees of Columbia University in the City of New York, Health Sciences Division, to investigate microbial and host biomarkers in colorectal cancer oncogenesis. The key objectives are to (I) mechanistically and therapeutically investigate amyloid-like FadA, a virulent adhesin of the oral bacterium...
- This federal Project Grant award of $400,890.00 from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) aims to profile patient-specific tumor-microbiome interactions and conduct quantitative molecular analyses to elucidate microbiome-mediated modulation of immune checkpoint molecules in mismatch repair-proficient, microsatellite-stable colorectal tumors. The goal is to provide a strategic roadmap and personalized workflow to enhance immunotherapeutic effects on non-responsive...
- Federal Project Grant Award Summary Endure Biotherapeutics, Inc. received a $392,827 Project Grant from the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395) awarded on August 5, 2025, with a completion date of July 31, 2026. The award supports the development of engineered native bacteria (ENB) as a novel therapeutic approach for treating Familial Adenomatous Polyposis (FAP), a hereditary cancer syndrome characterized by numerous colon polyps that inevitably...
- This Project Grant award from the National Cancer Institute (CFDA 93.393 - Cancer Cause and Prevention Research) provides $426,425 to Baylor College of Medicine to conduct a pilot study examining the relationship between gut microbiome composition, metabolic dysfunction-associated steatotic liver disease (MASLD), and hepatocellular carcinoma (HCC). The key objectives of this 2-year study are to: 1) characterize baseline gut microbiome diversity associated with MASLD with and without HCC, 2)...
- This $1,355,273 Project Grant was awarded by the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859) to the Regents of the University of Michigan. The grant funds the development of two complementary approaches to inhibit the production of the bacterial metabolite colibactin, which has been linked to colorectal cancer and microbiome dysbiosis. The first approach involves enzymatic inactivation of colibactin through...
- This federal Project Grant award in the amount of $469,830.00 was provided by the National Institute of Dental and Craniofacial Research (NIDCR) under the Oral Diseases and Disorders Research program (CFDA 93.121). The grant aims to identify oral bacterial species with anti-cancer properties and evaluate their potential for preventing or treating oral squamous cell carcinoma (OSCC). Specifically, the study will assess the effects of Streptococcus mitis and Haemophilus parainfluenzae on OSCC...
- Federal Project Grant Award Summary Cleveland Clinic Lerner College of Medicine of Case Western Reserve University received a $442,750 Project Grant from the National Institute of Dental and Craniofacial Research (NIDCR) under the Oral Diseases and Disorders Research program (CFDA 93.121) for the period July 1, 2025 through June 30, 2027. The award funds research to systematically identify drivers controlling interactions between Fusobacterium nucleatum (FN), a bacterium commonly found in oral...
- This Project Grant award, provided by the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395), will fund a pilot study to evaluate the associations of pre- and post-chemotherapy and -radiotherapy gut microbiome profiles with breast cancer recurrence and mortality. The $175,000 award will support the use of shotgun metagenome sequencing on 110 post-treatment stool samples from the Vietnam Breast Cancer Study, as well as an investigation of the impact of...
- This Project Grant award from the Department of Health and Human Services National Institutes of Health National Cancer Institute provides $582,100 to East Carolina University to support research on the role of mitochondrial complex I deficiency in colorectal cancer (CRC) tumor growth and progression. The research aims to elucidate how accumulated mitochondrial DNA mutations that disrupt complex I activity can paradoxically support CRC tumorigenesis, despite the general requirement for...
INTERROGATING THE ROLE OF BACTERIAL METHYL-MODIFYING ENZYMES IN PATHOADAPTATION AND HOST EPIGENETIC INTERFERENCE IN CANCER - PROJECT SUMMARY/ABSTRACT THE PROPOSED STUDY SEEKS TO DETERMINE IF DNA METHYLTRANSFERASES FROM MEMBERS OF THE MICROBIOTA CONTRIBUTE TO BACTERIAL PATHOADAPTATION IN THE TUMOR NICHE, DIRECT XENOGENEIC EPI-MODIFICATIONS ON THE HUMAN GENOME, AND CAN BE EXPLOITED AS THERAPEUTIC TARGETS IN CANCER PREVENTION/TREATMENT. WITHIN A PATIENT'S TUMOR, MALIGNANT CELLS ARE SURROUNDED BY A COMPLEX MICROENVIRONMENT ENCOMPASSING A RANGE OF NON-TRANSFORMED CELLS AND ALSO A DIVERSE COLLECTION OF MICROORGANISMS. FOR EXAMPLE, FUSOBACTERIUM NUCLEATUM (FN) IS SIGNIFICANTLY ENRICHED IN COLORECTAL ADENOCARCINOMA COMPARED TO ADJACENT NORMAL TISSUE. ALTHOUGH CELLULAR AND ANIMAL MODELS HAVE SUPPORTED A ROLE FOR THIS BACTERIUM IN CANCER INITIATION AND PROGRESSION, WE STILL HAVE LITTLE INFORMATION AS TO HOW THEY DIRECTLY CONTRIBUTE TO CANCER. IN PUBLISHED WORK, OUR GROUP HAS DEMONSTRATED THAT FN, WHICH IS USUALLY PART OF THE ORAL MICROBIOME AND NOT FOUND IN THE LOWER GASTROINTESTINAL TRACT, IS AN INVASIVE INTRACELLULAR BACTERIUM THAT EFFECTIVELY COLONIZES THE COLORECTAL CANCER (CRC) NICHE. IN PRELIMINARY STUDIES, WE ISOLATED AND CHARACTERIZED THE GENOMES AND EPIGENOMES OF >150 FN STRAINS FROM CRC TUMORS AND THE ORAL CAVITY AND DISCOVERED THAT WITHIN THE FN SUBSPECIES FN SUBSP. ANIMALIS, THERE ARE TWO DISTINCT CLADES THAT DIFFER IN THEIR ENRICHMENT IN CRC, WHICH WE NAMED FN ORAL-CLADE AND FN CRC-CLADE. WE SHOW THAT FNA CRC-CLADE IS THE ONLY FN GROUP SIGNIFICANTLY ENRICHED IN HUMAN TUMORS AND FECAL SPECIMENS. OF THE MANY DIFFERENCES BETWEEN THESE TWO CLADES, PERHAPS ONE OF THE MOST STRIKING IS THEIR DISTINCT DNA METHYLOME SIGNATURES, WITH CRC-CLADE UNIQUELY HARBORING GM6ANTC METHYL-MODIFICATIONS. WE, THEREFORE, HYPOTHESIZE THAT THE DNA METHYL-MODIFYING ENZYME (M.FNI) RESPONSIBLE FOR M6A METHYLATION AT THIS MOTIF CONTRIBUTES TO FN CRC-CLADE VIRULENCE DURING CARCINOGENESIS. WE PROPOSE TO TEST THIS HYPOTHESIS USING GENETICALLY ENGINEERED CRC-CLADE CLINICAL ISOLATES IN CELL CULTURE AND ANIMAL MODEL EXPERIMENTS TO DETERMINE IF M.FNI REGULATES BACTERIAL GENE EXPRESSION TO PROMOTE THEIR PATHOADAPTATION (AIM 1). ADDITIONALLY, WE SPECULATE THAT M.FNI CAN ACT AS A NUCLEOMODULIN TO DIRECTLY INTERFERE WITH THE HUMAN HOST EPIGENOME AND GENE REGULATION. WE WILL INVESTIGATE THIS POSSIBILITY THROUGH ECTOPIC EXPRESSION OF M.FNI IN HUMAN CRC CELL LINES AND PRE-CANCER ORGANOID MODELS TO DELINEATE ITS NUCLEOMODULIN POTENTIAL (AIM 2). FINALLY, WE SEEK TO DEVELOP CHEMICAL PROBES SPECIFIC FOR M.FNI TO AID IN AUTHENTICATING IT AS A THERAPEUTIC TARGET IN CRC PREVENTION AND PROGRESSION (AIM 3). WHILE WE FOCUS HERE ON A SINGLE PATHOGEN AND SINGLE DISEASE, SUCCESSFUL COMPLETION OF THESE AIMS WILL PROVIDE FUNDAMENTAL KNOWLEDGE ON THE ROLE OF MICROBIAL EPIGENETIC SYSTEMS IN TUMOR COLONIZING MICROBES. FURTHER, THIS WORK HAS POTENTIAL TO REVEAL A HIDDEN PARADIGM OF HOST MICROBE-EPIGENETIC CROSSTALK UNDERLYING THE ONCOGENIC PROCESS IN BACTERIAL-COLONIZED, HYPERMETHYLATED TUMORS. AS SUCH, IF OUR CORE HYPOTHESIS IS TRUE, THIS WORK COULD HAVE A FAR-REACHING IMPACT BEYOND CRC.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($676k) | 9/8/25 | ||
| Not listed | $676.4k | 7/1/25 | ||
| Not listed | $676.4k | 7/1/25 | ||
| Not listed | $0 | 12/9/24 | ||
| Not listed | $0 | 12/9/24 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
000170163002536960YR1S | Cleveland Clinic Lerner College Of Medicine Of Case Western Reserve University | Project Grant R01CA290034 | $120.1k | 10/10/24 |