Research Project:
Mirror Image Aptamers: Next Generation RNA-Binding Reagents for Basic Research and Therapeutic Applications

dc.contributor.departmentChemistry
dc.contributor.memberTAMU
dc.contributor.pdachttps://hdl.handle.net/20.500.14641/200
dc.contributor.sponsorDHHS-NIH-National Institute of General Medical Science
dc.creator.piSczepanski, Jonathan
dc.date2023-08-31
dc.date.accessioned2025-03-16T23:47:42Z
dc.date.available2025-03-16T23:47:42Z
dc.descriptionGrant
dc.description.abstractThe primary focus of this research proposal will be the identification, discovery, and elucidation of novel biochemical pathways for the metabolism of complex carbohydrates in the human gut microbiome. Currently, more than one thousand different bacterial species have been identified in the human intestinal tract and the total number of genes contained within these bacteria exceeds the number of human genes by more than two orders of magnitude. Moreover, it has been demonstrated that the composition of the human gut microbiome and the associated metabolic diversity contained within these bacteria contribute significantly to the maintenance of human health and physiology. Unfortunately, a significant fraction of the enzymes and corresponding metabolic pathways contained within the bacteria found in the human gut have an uncertain, unknown, or incorrect functional annotation. This uncertainty suggests that a substantial fraction of the metabolic potential contained within the human gut microbiome remains to be properly characterized. Our proposed experimental approach for the discovery and elucidation of novel metabolic pathways for the metabolism of complex carbohydrates will involve the concerted and synergistic utilization of bioinformatics, computational biology, three-dimensional protein structure determination, metabolomics and physical screening of focused compound libraries. The determination of the substrate and reaction diversity contained within the newly discovered enzyme-catalyzed reactions will provide unique insights into the molecular mechanisms for the evolution and development of novel enzymatic activities and will provide potential targets for therapeutic intervention.
dc.description.chainOfCustody2025-03-16T23:51:46.173657245 Sergio Coronado (c03e62cb-0924-4750-bb60-5a58e03d7271) added Sczepanski, Jonathan (86083034-dcee-4b0b-a5ae-a74d045b8fa9) to null (cff9cf4a-c5b8-415c-8bbe-44c4c8204184)en
dc.identifier.otherM1800180
dc.identifier.urihttps://hdl.handle.net/20.500.14641/874
dc.relation.profileurlhttps://scholars.library.tamu.edu/vivo/display/ncc157d6e
dc.titleMirror Image Aptamers: Next Generation RNA-Binding Reagents for Basic Research and Therapeutic Applications
dc.title.projectMirror Image Aptamers: Next Generation RNA-Binding Reagents for Basic Research and Therapeutic Applications
dspace.entity.typeResearchProject
local.awardNumberR35GM124974
local.pdac.nameSczepanski, Jonathan
local.projectStatusTerminated

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