Defining the role of cobamides in skin microbiome dynamics
Defining the role of cobamides in skin microbiome dynamics
批准号:
10532062
负责人:
Mary Hannah Swaney
金额:
$3.52万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-09-01 至 2025-08-31
关键词:
AdultAnabolismAutomobile DrivingBacteriaBioinformaticsBiologicalBiological ProcessBiological Response Modifier TherapyChemicalsClinicalCommunitiesComplexCorynebacteriumDataDevelopmentDiseaseEcologyEducationEngineered skinEngineeringEnvironmentFamilyFutureGene ExpressionGenesHealthHomeostasisHumanImmune systemImmunityIn VitroIndividualInterventionInvadedLifeLiteratureMaintenanceMediatingMetabolismMetagenomicsMethodsMicrobeMicrobiologyMicronutrientsModelingNational Research Service AwardsOrganismOutcomePathway interactionsPlayProbioticsProductionProkaryotic CellsResearchResourcesRoleScientistShapesSkinStructureSurfaceSystemTaxonTrainingUniversitiesVitamin B 12VitaminsWisconsinWorkbasecareercofactorgut healthgut microbiotaimprovedin vivoinsightintestinal injurymetagenomemicrobialmicrobial communitymicrobiomemicrobiome componentsmicrobiome compositionmicrobiome researchmicrobiotamicroorganismmicroorganism interactionmutantnetwork modelsnew therapeutic targetnovelpathogenprebioticspredictive modelingpreventskin barrierskin disorderskin microbiomeskin microbiota
中文摘要
点击翻译按钮获取中文摘要
英文摘要
PROJECT SUMMARY
The human skin microbiome is a complex and distinct community of microbiota that contributes to both human
health and disease. However, the fundamental biological and ecological interactions that occur within skin
microbial communities to maintain microbiome structure, stability, and function, and overall skin health, are
unknown. Often, these interactions are mediated by microbial metabolites. Cobamides, which are microbial
metabolites of the vitamin B12 family of cofactors, are essential for metabolism in many bacteria as well as
humans, but they are only synthesized by a small fraction of prokaryotes. Preliminary work has shown that host-
associated species within the Corynebacterium genus, a dominant skin taxon, are enriched for the de novo
cobamide biosynthesis pathway, including several human skin-associated species. An emerging body of
literature suggests that cobamide sharing between microorganisms plays a key role in mediating microbial
community dynamics. However, the role for microbial-derived cobamides at the skin surface has never been
studied. Therefore, the overall objective of this proposal is to characterize the mechanisms governing cobamide
production and usage by individual skin microorganisms and within communities. This will be accomplished
through two related Aims. First, skin commensal use and biosynthesis of cobamides will be characterized by
analyzing skin metagenomic data and validated through the use of in vitro microbiological and chemical
approaches. Second, the role of cobamides in shaping skin microbial community interactions will be determined
using synthetic skin microbial communities both in vitro and ex vivo using a live human skin model. Completion
of these aims will define the previously unexplored role of cobamides in the skin microbiome, which will increase
our understanding of the fundamental biological processes that underly the skin microbiome’s role in human
health. These studies will present a novel therapeutic target for engineering the microbiome with vitamin-
producing probiotics and will lay the groundwork for microbiome modulation via micronutrient sharing. The
support provided through the F31 NRSA will further contribute to the applicant’s scientific training in the vibrant
research environment at the University of Wisconsin-Madison and will provide the necessary resources to
advance her professional career towards becoming an independent scientist and expert in the field of
microbiome research.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Defining the role of cobamides in skin microbiome dynamics
-
批准号:10700883
-
项目类别:
-
资助金额:$3.65万
-
财政年份:2022
-
负责人:Mary Hannah Swaney
-
依托单位:
海外基金