Project Grant R01AG085444
- This Project Grant award from the National Institutes of Health's Aging Research program (CFDA 93.866) will support research to identify early transcriptional and pathological changes in brain regions vulnerable to Alzheimer's disease (AD). The $459,076 award, granted to Trustees of Boston University, will use single-nucleus RNA sequencing and targeted mass spectrometry to profile cell type-specific gene expression and tau/amyloid beta proteoforms in the transentorhinal cortex, entorhinal...
- The National Institute on Aging (NIA) awarded a $1,994,202 Project Grant under CFDA 93.866 - Aging Research to Mayo Clinic Jacksonville (A Nonprofit Corporation) to research a new microglial therapy candidate for Alzheimer's disease (AD) that could prevent cognitive decline. The grant aims to target the tumor susceptibility gene 101 (TSG101) in microglia to manipulate extracellular vesicle secretion and mitigate tau pathology development. The research will be conducted in three phases: targeting...
- This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) aims to elucidate the role of RNA modification, specifically N6-methyladenosine (m6A), in the pathogenesis of Alzheimer's disease (AD) and related tauopathies. The total award amount is $745,092 over the project period from January 1, 2025 to November 30, 2029. The key objectives are to: 1) decode the epitranscriptomic profiles impacted by tau pathology using m6A DART-seq; 2) determine the role of RNA...
- This Project Grant award from the National Institute on Aging's Aging Research program (CFDA 93.866) provides $2,181,250 in funding to the Seattle Institute For Biomedical And Clinical Research to develop small molecule inhibitors of the MSUT2 protein as a potential therapeutic approach for treating tauopathy disorders such as frontotemporal lobar degeneration, Alzheimer's disease, and related conditions. The project aims to optimize potent and brain-penetrant MSUT2 inhibitors and demonstrate...
- This federal Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $2,489,452.00 to the University of California, Irvine to investigate circuit vulnerability in the lateral and medial entorhinal cortices in Alzheimer's disease (AD) tauopathy models. The research aims to identify specific neuron subtypes in the entorhinal cortex that are vulnerable to the tau protein pathology in AD, and how this relates to impaired memory function. The project is...
- The National Institute on Aging (NIA) awarded a $4,276,054 Project Grant under the Aging Research federal grant program (CFDA 93.866) to The Regents of the University of California, San Francisco (UCSF) on September 1, 2024. The project aims to develop mathematical models to quantitatively test and validate hypotheses regarding the selective vulnerability of genes, cells, and neural networks in mouse models of Alzheimer's disease (AD) tauopathy. The research will leverage two enabling...
- This Project Grant award of $717,709 from the National Institute on Aging (CFDA 93.866 - Aging Research) supports research to discover cellular mechanisms underlying the propagation of misfolded tau protein aggregates in human neurons, which are key drivers of cognitive decline in Alzheimer's disease (AD) and frontotemporal dementia (FTD). The research combines advanced proteomic techniques, deep learning analyses, and transcriptomic profiling using newly generated human induced pluripotent stem...
- The National Institute on Aging (NIA), through the Aging Research Federal Grant Program (CFDA 93.866), awarded a $500,000 Project Grant to T-Neuro Inc. to confirm the use of aberrant T cells as an amyloid-independent blood biomarker for potentially earlier diagnosis and tracking the progression of Alzheimer's disease (AD). The award period is from August 1, 2025 to July 31, 2026. The project aims to demonstrate that alterations in age-related cytolytic (CD8) T cells can impact AD pathology...
- This $1,823,353 Project Grant awarded by the National Institute on Aging (CFDA 93.866 Aging Research) to the Seattle Institute For Biomedical And Clinical Research aims to elucidate the molecular mechanisms by which pathological tau protein causes neurodegeneration in Alzheimer's disease (AD) and related tauopathy disorders. The research project will leverage a C. elegans model of tauopathy to investigate the functional role of nuclear speckles, membraneless organelles involved in RNA...
- This federal Project Grant award of $238,500 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, will support research conducted by the University of California, San Diego (UCSD) to develop a new phosphorodiamidate morpholino oligonucleotide (PMO) therapeutic for treating Alzheimer's disease (AD). The research aims to create a highly effective PMO that can...
REGULATION OF ENTORHINAL CORTEX LAYER II VULNERABILITY BY A CELL-TYPE SPECIFIC MIRNA - PROJECT SUMMARY NEUROFIBRILLARY TANGLE FORMATION AND NEURODEGENERATION OCCUR, DURING PRECLINICAL ALZHEIMER'S DISEASE (AD), IN REMARKABLY RESTRICTED CELL POPULATIONS, IN THE LAYER II OF THE EC (ECII), AT FIRST IN A SUBREGION OF EC, THE TRANSENTORHINAL AREA (TEC). THE REASON FOR THIS SELECTIVE VULNERABILITY PATTERN IS STILL UNKNOWN. IT IS CRUCIAL TO DISCOVER GENES AND PATHWAYS UNDERLYING VULNERABILITY, BECAUSE THEY COULD BOTH YIELD MECHANISTIC INSIGHT INTO THE DISEASE AND OPEN NEW THERAPEUTIC AVENUES. WE PREVIOUSLY COMPARED PROTEIN-CODING GENES BETWEEN ECII AND VARIOUS NEURON TYPES RESISTANT TO AD AND UNCOVERED A NUMBER OF GENE DRIVERS OF NEURONAL VULNERABILITY BY BUILDING AN ECII FUNCTIONAL NETWORK. HERE, USING SINGLE-NUCLEUS RNA-SEQUENCING, WE IDENTIFY A MICRO RNA (MIRNA), MIR-129-2, WITH A UNIQUE EXPRESSION PATTERN THAT MAKES IT A VERY PROMISING CANDIDATE VULNERABILITY GENE. IT IS EXPRESSED AT HIGHEST LEVELS IN THE TEC, MIGHT BE DIFFERENTIALLY EXPRESSED BETWEEN MOUSE AND HUMANS, AND IS PREDICTED TO MODULATE AD PATHOLOGY IN THE EC BY OUR FUNCTIONAL NETWORK ANALYSIS. ADDITIONALLY, TWO OF ITS TARGETS ARE EXTREMELY RELEVANT FOR AD: RBFOX1, AN AD GENETIC SUSCEPTIBILITY FACTOR, AND MAPT, THE GENE THAT CODES FOR TAU ITSELF. MIRNAS, BY MODULATING EXPRESSION OF HUNDREDS OF GENES AT ONCE CAN HAVE PROFOUND EFFECTS ON CELLS, SERVING BOTH AS FUNCTIONAL AND PATHOLOGICAL HUBS. HERE WE PROPOSE TO INVESTIGATE HOW MIR-129-2 INTERFERES WITH DIFFERENT ASPECTS OF AD PATHOGENESIS AND TO DEMONSTRATE THAT IT IS PROTECTIVE AGAINST TAU ACCUMULATION. IN AIM 1, WE PROPOSE TO MAP THE SUBREGIONS OF EC WHERE MIR-129-2 IS EXPRESSED, IN MOUSE AND HUMANS. IN AD, MIR-129-2 IS DOWNREGULATED, AND WE WILL TEST HOW EARLY IN THE DISEASE THIS DOWNREGULATION OCCURS BY COMPARING ITS LEVELS IN THE EC IN CONTROL AND PRODROMAL AD INDIVIDUALS. TO DETERMINE WHY MIR-129-2 DECREASES IN AD, WE WILL TEST ITS EXPRESSION IN AD-LIKE CONTEXTS (AB, AGING) IN THE MOUSE. IN AIM 2, WE WILL STUDY THE CROSSTALK BETWEEN MIR-129-2 AND RBFOX1 AND HOW BOTH BROADLY REGULATE AD GENES IN ECII, BY REGULATING SPLICING AND RNA STABILITY. WE WILL TEST IF MIR-129-2 REGULATES AMYLOIDOSIS AND MICROGLIA ACTIVATION. LASTLY IN AIM 3, WE WILL ASK IF MIR-129-2 HAS A ROLE IN DIRECTLY CURTAILING TAU LEVELS. IF WE VALIDATE THAT THIS IS THE CASE, MIR-129-2 WILL BE AN EXCITING THERAPEUTIC TARGET THAT WE COULD MIMIC IN ORDER TO KEEP TAU LEVELS AT BAY IN ECII NEURONS. SYSTEMATICALLY SILENCING IT IN AD MOUSE MODELS WOULD ALSO GENERATE MODELS WITH MORE ABUNDANT AD-LIKE PATHOLOGY IN ECII NEURONS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $54.5k | 6/10/25 | ||
| Not listed | $613.6k | 5/2/25 | ||
| Not listed | $613.6k | 5/2/25 | ||
| Not listed | $0 | 9/13/24 | ||
| Not listed | $0 | 9/13/24 |