Project Grant R35GM153298
- This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) Project Grant award of $289,171 to Michigan State University (MSU) aims to investigate how a class of small-molecule compounds called dipeptides control the activity of the central carbon metabolism of plants. The research project, titled "Functional Characterization of the Enzyme Dipeptide Interaction Network and Its Role in the Regulation of Arabidopsis Carbon Metabolism", leverages in vitro binding...
- This $813,012 National Science Foundation Project Grant will support research into protein assemblies and their role in cellular metabolism at the University of Washington in Seattle. The grant aims to establish testable models of how sequential protein enzymes form transient supramolecular assemblies called metabolons within living cells' metabolic pathways. Researchers will elucidate the physical mechanisms responsible for assembling these complexes into spatial networks and how they...
- The National Science Foundation (NSF) Division of Molecular and Cellular Biosciences awarded a $590,000 Project Grant to the University of California Irvine (UC Irvine) on August 15, 2023 under the Biological Sciences program (CFDA 47.074). The goal of this 3-year research project is to develop novel strategies for real-time metabolite sensing and metabolite-induced enzyme localization that can contribute to fundamental cellular knowledge and improve the efficiency of synthetic biology...
- Federal Project Grant Award Summary New York University School of Medicine received a $466,125 Project Grant from the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859), awarded June 1, 2025, with completion scheduled for May 31, 2030. The award funds fundamental research to identify and characterize metabolic control mechanisms—specifically, how cells sense and respond to nutrient availability through metabolite...
- This $644,900 Project Grant, awarded July 1, 2025, through the National Institute of General Medical Sciences (NIGMS) Biomedical Research and Research Training program (CFDA 93.859), supports fundamental research on PAS (Period-Arnt-Singleminded) domain proteins and their signaling mechanisms. The award, administered by the Research Foundation of the City University of New York's Advanced Science Research Center and scheduled for completion by June 30, 2030, will deliver structural, biophysical,...
- This Project Grant award from the National Science Foundation (CFDA 47.074 - Biological Sciences) provides $2,999,526 to Michigan State University to expand the Plant Metabolic Network (PMN) database and establish a plant enzyme function consortium. Key products and services to be delivered include: Expanding the PMN database from 126 to over 1,000 plant species by leveraging bioinformatics tools to rapidly create new PMN databases. This will provide researchers greater access to metabolic...
- The National Institute of General Medical Sciences (NIGMS) awarded a $216,906 Project Grant to The Regents of the University of Colorado, doing business as the University of Colorado Office of Contracts and Grants Division, to conduct research on the "Evolution of Novel Metabolic Pathways" under CFDA Program 93.859 - Biomedical Research and Research Training. The funding will support the University's efforts to study how organisms can evolve new metabolic pathways to access new...
- Grant Award Summary Brandeis University received a $393,149 Project Grant from the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859), effective June 1, 2025, through March 31, 2030. The award funds fundamental research into the regulation of PPM (protein phosphatase methylesterase) family serine/threonine phosphatases, with the objective of advancing understanding of how protein phosphatases are regulated and directed...
- This $563,880 Project Grant, awarded September 1, 2025, through the National Institute of General Medical Sciences (NIGMS) Biomedical Research and Research Training program (CFDA 93.859), supports fundamental research investigating the regulatory mechanisms of the unfolded protein response (UPR) signaling network. The University of Wisconsin–Milwaukee will conduct a three-year research project (through August 31, 2028) focused on understanding how UPR pathways—activated by endoplasmic...
- Federal Grant Award Summary Northeastern University received a $434,000 Project Grant award from the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859), effective March 2, 2026, with a completion date of December 31, 2030. The grant supports the Skinner Lab's research on integrated mass spectrometry strategies to characterize metabolite-protein cross-regulation in cellular metabolism. The project develops and applies...
PROTEIN-METABOLITE INTERACTION NETWORKS FOR FUNCTIONAL CHARACTERIZATION OF METABOLITES. - PROJECT SUMMARY METABOLITES ARE CENTRAL TO ORCHESTRATING ALL CELLULAR PROCESSES, YET FUNCTIONS OF MANY METABOLITES REMAIN UNKNOWN. THE PREDOMINANT MODE OF METABOLITE ACTION IS REGULATING PROTEIN ACTIVITIES. HENCE, ONE WAY TO UNDERSTAND A METABOLITE'S ROLE IS TO IDENTIFY ITS PROTEIN TARGETS. MY RESEARCH PROGRAM INVESTIGATES HOW ORGANISMS EXPLOIT METABOLITES TO REGULATE PROTEIN ACTIVITIES AND, CONSEQUENTLY, CELLULAR PROCESSES BY UNTARGETED IDENTIFICATION OF PROTEIN-METABOLITE COMPLEXES. WE ARE ESPECIALLY INTERESTED IN IDENTIFYING ENZYME-LIGAND PAIRINGS CONTRIBUTING TO METABOLIC ADAPTATIONS. I ADDRESS THIS QUESTION FROM THE PERSPECTIVE OF A BIOCHEMIST AND AN EXPERT IN MASS-SPECTROMETRY. TO OBTAIN A SNAPSHOT OF THE PROTEIN- METABOLITE INTERACTOME IN A SINGLE EXPERIMENT, MY GROUP DEVELOPED PROMIS; AN ORIGINAL BIOCHEMICAL APPROACH THAT RELIES ON THE CO-FRACTIONATION OF PROTEINS AND ASSOCIATED SMALL-MOLECULE LIGANDS. THE PROTEIN-METABOLITE INTERACTION (PMI) NETWORKS ARE QUERIED FOR NOVEL REGULATORY INTERACTIONS FOLLOWED BY IN-DETAIL FUNCTIONAL ANALYSIS. ONE OF THE KEY FINDINGS COMING FROM OUR WORK IS UNCOVERING THE ROLE OF PROTEINOGENIC DIPEPTIDES IN THE REGULATION OF CENTRAL CARBON METABOLISM IN YEAST AND PLANTS; SPECIFIC DIPEPTIDES ACT AT DIFFERENT POINTS OF FLUX CONTROL. THESE FINDINGS REPRESENT JUST THE TIP OF THE ICEBERG CONSIDERING THE HUNDREDS OF METABOLITES PRESENT IN PMI DATASETS GENERATED BY MY GROUP AND SPANNING FOUR MODEL ORGANISMS INCLUDING GRAM-NEGATIVE BACTERIA ESCHERICHIA COLI, BUDDING YEAST SACCHAROMYCES CEREVISIAE, PLANT ARABIDOPSIS THALIANA, AND ROUNDWORM CAENORHABDITIS ELEGANS. OVER THE NEXT FIVE YEARS, THE FOCUS OF MY RESEARCH PROGRAM IS TO BUILD ON THE EXPERIMENTAL TOOLBOX AND WEALTH OF PMI DATA TO UNCOVER THE EVOLUTIONARY CONSERVATION OF THESE PMI NETWORKS AND TO FUNCTIONALLY CHARACTERIZE PREVIOUSLY UNKNOWN METABOLITE-PROTEIN PAIRINGS ASSOCIATED WITH PROCESSES ESSENTIAL TO ORGANISMAL HEALTH. TO ADDRESS THESE GOALS, I WILL LEAD PROJECTS UNDER THREE BROAD THEMES (1) ASSEMBLY AND VALIDATION OF THE ORGANISM-SPECIFIC AND PAN-ORGANISMAL PROTEIN-METABOLITE INTERACTOME, (2) EXTENDING THE ANALYSIS TO THE UNKNOWN COMPOUNDS PRESENT IN THE PROTEIN-COMPLEXES AND INTRODUCING COMPUTATIONAL METHODS TO PREDICT PMIS AND (3) FURTHER FUNCTIONAL CHARACTERIZATION OF THE ROLES OF DIPEPTIDES IN REGULATING CENTRAL CARBON METABOLISM IN ARABIDOPSIS. THE KNOWLEDGE GAINED OVER THE NEXT FIVE YEARS IN THE PROPOSED PROJECTS WILL EXPAND OUR UNDERSTANDING OF THE REGULATORY ROLES OF METABOLITES. THE ENVISAGED ORGANISM-SPECIFIC AND PAN-ORGANISMAL PROTEIN-METABOLITE INTERACTOMES WILL PROVIDE A SOLID FOUNDATION FOR US AND OTHERS TO UNCOVER NOVEL SMALL-MOLECULE REGULATORS AND THEIR MODES OF ACTION. FUNCTIONAL DISSECTION OF THE DIPEPTIDE-ENZYME INTERACTION NETWORKS WILL CONTRIBUTE TO THE MECHANISTIC UNDERSTANDING OF THE CENTRAL QUESTION IN BIOLOGY OF HOW ORGANISMS REMODEL THEIR METABOLISM TO CHANGING ENVIRONMENTS. THE OUTCOME OF MY RESEARCH MAY LEAD TO INNOVATION IN THE FORM OF SMALL MOLECULE-BASED STRATEGIES AIMED AT IMPROVING PLANT AND ANIMAL HEALTH.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $384.1k | 4/15/25 | ||
| Not listed | $0 | 11/21/24 | ||
| Not listed | $0 | 11/21/24 | ||
| Not listed | $384.1k | 5/28/24 | ||
| Not listed | $384.1k | 5/28/24 |