Project Grant K99AG084860
- This Project Grant, awarded by the National Institute on Aging (NIA) under the Aging Research program (CFDA 93.866), supports research investigating the mechanisms of polycomb-mediated gene repression and its relationship to aging at the cellular level. The $100,576 award to Massachusetts Institute of Technology, effective March 18, 2026 through June 30, 2031, funds a life-spanning study examining how cohesin and CTCF (transcriptional regulatory proteins) facilitate three-dimensional chromatin...
- Summary The University of Arkansas, Fayetteville is conducting fundamental biomedical research on skeletal muscle aging and rejuvenation under a $141,890 Project Grant (R01) awarded by the National Institute on Aging through its Aging Research program (CFDA 93.866). The project, spanning from June 1, 2025 through July 31, 2030, investigates the role of the MYC transcription factor in mediating muscle functional, metabolic, cellular, and molecular plasticity across the lifespan. Researchers...
- Federal Project Grant Award Summary The National Institute on Aging (NIA) awarded Massachusetts General Hospital $157,760 on August 20, 2026, under the Aging Research program (CFDA 93.866) to investigate a novel mechanism of autophagic degradation in cellular senescence. The research project, with a completion date of August 19, 2027, will examine how autophagy—a cellular self-digestion process—functions differently in senescent cells compared to other cellular states. Specifically, the...
- This $451,000 Project Grant award from the National Institute on Aging's Aging Research program (CFDA 93.866) will fund research by The University of Texas Southwestern Medical Center to investigate the role of the p38 MAPK signaling pathway in regulating lysosome function and tissue integrity during development and aging. The key goals of this 2-year project are to: 1) define the p38 MAPK interactome required for lysosome regeneration, 2) reveal tissue and stage-specific functions of p38 MAPK...
- Federal Grant Award Summary The National Institute on Aging (NIA) awarded a $120,573 Project Grant to the University of Washington, effective September 1, 2025 through May 31, 2030, under the Aging Research program (CFDA 93.866). This Career Development Award supports Dr. Matthew D. Campbell, a skeletal muscle and mitochondrial biologist in the Radiology Department, to conduct research investigating dysfunctional mechanisms of mitochondrial redox-sensitive signaling in aged skeletal muscle...
- Federal Project Grant Award Summary The National Institute on Aging (NIA) awarded Massachusetts General Hospital $269,452 on February 18, 2026, under the Aging Research program (CFDA 93.866) to conduct research on proteomic aging and frailty prediction. The project, entitled "Deciphering Proteomic Aging: From Causal Mechanisms to Frailty Prediction," will integrate large-scale genetic, multi-omic, and clinical data from four major biobanks—the UK Biobank, Multi-Ethnic Study of...
- Federal Project Grant Award Summary The National Institute on Aging (NIA) awarded a Project Grant totaling $132,705.00 on June 15, 2025, to The Children's Hospital Corporation (Boston Children's Hospital) under the Aging Research program (CFDA 93.866). This award supports research addressing hematopoietic clonal dominance during aging—a condition in which driver mutations cause a limited number of hematopoietic stem and progenitor cell (HSPC) clones to disproportionately contribute to blood cell...
- Grant Award Summary The National Institute on Aging (NIA) awarded a $150,104 Project Grant to The University of Texas Health Science Center at San Antonio (UTHSCSA) under the Aging Research program (CFDA 93.866), with an award date of March 3, 2026, and completion date of August 31, 2028. This fellowship-based research project aims to advance scientific understanding of the bidirectional relationship between circadian rhythm dysfunction and cellular senescence—a major driver of age-related...
- Federal Grant Award Summary The National Institute on Aging (NIA) awarded The Regents of the University of California, San Francisco $460,283 through the Aging Research program (CFDA 93.866) to conduct a two-year research project from September 1, 2025 through August 31, 2027. This Project Grant supports biomedical research directed toward understanding the aging process and age-related diseases, with the funded research examining the role of reverse electron transport (RET) inhibition in...
- The University of Minnesota, Office of Sponsored Projects Administration, received a $423,500 Project Grant from the National Institute on Aging (NIA) under the Aging Research program (CFDA 93.866) for the period February 1, 2026 through January 31, 2028. The award funds research investigating the functional characterization of adipocyte-derived lipocalin 2-containing extracellular vesicles in senescence. The project will generate scientific knowledge regarding the role of extracellular vesicles...
INVESTIGATING THE LINK BETWEEN PROPIONATE METABOLISM AND AGING - PROJECT SUMMARY/ ABSTRACT AGING, THE GRADUAL DECLINE IN AN ORGANISM'S PHYSIOLOGICAL FUNCTIONS OVER ITS LIFESPAN, IMPACTS ALL INDIVIDUALS. YET, WHY DO SOME INDIVIDUALS AGE FASTER AND SHOW A GREATER SUSCEPTIBILITY TO AGE-RELATED DISEASES, INCLUDING CANCER, TISSUE FIBROSIS, AND DIABETES, COMPARED TO OTHERS? MOUNTING EVIDENCE SUPPORTS THE IDEA THAT AGING, AND THE ASSOCIATED PROCESS OF CELL SENESCENCE, ARE ROOTED IN METABOLIC DYSFUNCTION. METABOLIC DYSFUNCTION OCCURS WHEN CHEMICAL REACTIONS BECOME DYSREGULATED DURING AGING AND NEGATIVELY ALTER THE BODY'S PROCESSING AND DISTRIBUTION OF NUTRIENTS, INDUCING THE ABERRANT ACCUMULATION OF CERTAIN METABOLITES. THESE METABOLITES CAN AFFECT CELLULAR FUNCTION BY ALTERING SIGNALING PROCESSES AND PROTEIN MODIFICATIONS, CONTRIBUTING TO AGING PROGRESSION. THE LINK BETWEEN AGING AND METABOLISM HAS SOLIDIFIED ITSELF AS ONE OF THE NEW CHALLENGES IN UNDERSTANDING THE COMPLEXITY OF AGING AS A SYSTEMIC DISEASE. IDENTIFYING METABOLIC PATHWAYS AND METABOLITES THAT DRIVE CELL SENESCENCE AND METABOLIC DYSFUNCTION IS CRITICAL TO UNDERSTANDING AND TREATING AGE-RELATED DISEASES. THE PROPIONATE METABOLISM PATHWAY IS A HIGHLY CONSERVED PATHWAY CRITICAL FOR THE METABOLISM OF CERTAIN AMINO ACIDS, ODD CHAIN FATTY ACIDS, CHOLESTEROL AND PROPIONATE. THE FUNCTION OF THIS PATHWAY AND ITS METABOLITES IN CELL SENESCENCE AND AGING REMAINS TO BE IDENTIFIED. PREVIOUS STUDIES AND MY PRELIMINARY DATA SUGGEST THAT THE ACTIVITY OF PROPIONATE METABOLISM CHANGES WITH AGING, AND TWO METABOLITES IN THIS PATHWAY, METHYLMALONIC ACID (MMA) AND PROPIONYL-COA (P-COA), ARE INVOLVED IN THE REGULATION OF CELL SENESCENCE, LIPID METABOLISM AND PROTEIN MODIFICATION. THEREFORE, I HYPOTHESIZE THAT THE PROPIONATE METABOLISM PATHWAY PLAYS A FUNDAMENTAL ROLE IN THE AGING PROCESS. DURING THE K99 PHASE OF THIS AWARD, I WILL CONTINUE DISSECTING THE ROLE OF MMA IN CELL SENESCENCE AND AGING-ASSOCIATED PULMONARY FIBROSIS. ADDITIONALLY, I WILL CHARACTERIZE A NOVEL FUNCTION OF P-COA IN LIPID DROPLET DYNAMICS. I WILL ALSO UNCOVER THE FUNCTION OF A NOVEL POST-TRANSLATIONAL MODIFICATION (PROPIONYLATION) ON P53 (A KEY REGULATOR FOR CELL SENESCENCE) AND CATALOG TARGET PROTEINS FOR PROPIONYLATION. DURING THE R00 PHASE OF THIS AWARD, I WILL EXPAND ON MY LIPID DROPLET STUDIES AND INVESTIGATE THE ROLE OR P-COA IN AGING-ASSOCIATED ECTOPIC FAT ACCUMULATION (VISCERAL FAT DEPOSITION) AND VALIDATE THE TARGET PROTEINS FOR PROPIONYLATION AS IDENTIFIED DURING K99 PHASE. FURTHERMORE, I WILL IDENTIFY THE MAIN TARGET GENES AND FUNCTIONS ASSOCIATED WITH HISTONE H3 AT LYSINE 23 (H3K23) PROPIONYLATION DURING CELL SENESCENCE. THESE INVESTIGATIONS WILL PAVE THE WAY FOR NEW RESEARCH PROJECTS AND SERVE AS THE BASIS FOR PURSUING R01 GRANTS AND OTHER FUNDING OPPORTUNITIES. THIS AWARD WILL ALLOW ME TO EXPAND ON MY TRAINING IN AGING PHYSIOLOGY, METABOLISM AND EPIGENETICS, AND GAIN EXPERTISE IN CHROMATIN BIOLOGY, LIPID DROPLETS DYNAMIC, AND PROTEIN POST-TRANSLATIONAL MODIFICATION, ULTIMATELY HELPING ME DEVELOP NEW NICHES (METABOLIC DYSFUNCTIONS AND AGING) AS AN INDEPENDENT INVESTIGATOR. IN ADDITION TO THE SCIENTIFIC OBJECTIVES OUTLINED IN THIS PROPOSAL, I HAVE DEVISED A COMPREHENSIVE TRAINING PLAN FOR THE K99 PHASE OF THE AWARD TO ENSURE A SMOOTH TRANSITION TOWARDS INDEPENDENCE.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $101.9k | 8/4/25 | ||
| Not listed | $101.9k | 7/24/24 |