Role of miRNAs in the transmission of metabolic risks
Role of miRNAs in the transmission of metabolic risks
批准号:
10446558
负责人:
Alexander K. Murashov
金额:
$37.92万
依托单位:
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:
2022-05-01 至 2025-03-31
关键词:
AdoptedAdverse effectsAffectAnimal ModelBiochemicalBioenergeticsBrainCaloriesCellsChildChronicClosure by clampComplexConsumptionDataDevelopmentDrosophila genusEarly DiagnosisEatingEnergy MetabolismEnvironmental Risk FactorEpigenetic ProcessExerciseFamilyFat BodyFeeding behaviorsFemaleFutureGenerationsGeneticGerm CellsGlucose IntoleranceHeritabilityHigh Fat DietHumanImpairmentIn VitroInheritedInterventionKnowledgeLaboratoriesLeadLongevityMetabolicMetabolic DiseasesMetabolic dysfunctionMethodologyMicroRNAsMissionMitochondriaModelingMolecularMolecular TargetMonitorMotor ActivityMuscleObesityObesity EpidemicPhenotypePhysiologicalPlayPliabilityPredispositionProteomeProteomicsPublic HealthPublishingResearchResolutionRiskRoleSomatic CellTechniquesTestingTissuesUnited States National Institutes of Healthbasediet and exerciseflygenome-widein vivoinnovationinsightknowledge basemalemetabolic phenotypemiRNA expression profilingmitochondrial dysfunctionmolecular markermortalitymouse modelmultiplex assaynovelnovel diagnosticsnovel therapeutic interventionnutritionobesity in childrenoffspringpersonalized interventionsedentarysperm celltranscriptome sequencingtranscriptomicstransgenerational epigenetic inheritancetransmission processwestern diet
中文摘要
儿童肥胖的流行与环境因素密切相关。人类的家族聚集研究和动物模型的跨代研究表明,肥胖具有高度遗传性,祖先暴露可使后代易患各种代谢紊乱的风险。我们的实验室是第一个证明父亲运动在后代“节俭表型”编程中的作用。我们发表的和初步的使用果蝇和小鼠模型的OXPHOS效率分析表明,“节俭表型”是由后代线粒体生物能量效率的改变引起的。
英文摘要
The childhood obesity epidemic has been strongly associated with environmental factors. Family aggregation studies in humans and transgenerational studies in animal models show that obesity is highly heritable, and ancestral exposures can predispose offspring to the risk of various metabolic disorders. Our laboratory was the first to show the role of paternal exercise in programming “thrifty phenotype” in offspring. Our published and preliminary OXPHOS efficiency analyses using Drosophila and mouse models indicate that the “thrifty phenotype” is caused by an alteration in the offspring's mitochondrial bioenergetic efficiency.
Preliminary proteomic and transcriptomic analyses revealed that developmental changes in bioenergetic efficiency were due to mitochondrial proteome remodeling associated with alterations in somatic and germ cell microRNAs (miRNAs), thereby providing a potential mechanism for the transgenerational transmission and programming of metabolic risks. The central hypothesis of the project is that miRNAs play a key role in the developmental programming of mitochondrial bioenergetic efficiency. Based on published and preliminary data, a secondary hypothesis is that changes in mitochondrial bioenergetic efficiency are inherited via spermatozoal cells as alterations in miRNAs. To test these hypotheses, we propose to take advantage of the physiological simplicity and genetic manipulability of fruit fly Drosophila. Therefore, the specific aims for this project are:
Aim 1. Determine the functional consequences of altered miRNA expression in programming offspring metabolic state.
Aim 2. Determine the spermatozoal epimutations responsible for the transgenerational programming of the bioenergetic phenotype.
The methodological innovations of this project include the application of a multiplexed assay platform with a variable energetic clamp technique recently adopted to flies, a novel proteomics-based approach to merge mitochondrial flux data with in-house proteomics to reveal molecular markers of transgenerational phenotype. This study is expected to significantly advance our understanding of the epigenetic origins of childhood obesity. Deciphering primary molecular mechanisms of developmental metabolic programming will provide a better understanding of how childhood obesity and related metabolic diseases could be more effectively targeted.
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Role of miRNAs in the transmission of metabolic risks
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批准号:10886209
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项目类别:
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资助金额:$21.11万
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财政年份:2022
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负责人:Alexander K. Murashov
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依托单位:
Role of miRNAs in the transmission of metabolic risks
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批准号:10592366
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项目类别:
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资助金额:$14.29万
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财政年份:2022
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负责人:Alexander K. Murashov
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依托单位:
MicroRNA pathway in mechanisms of nanoparticles neurotoxicity
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批准号:8035758
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项目类别:
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资助金额:$40.43万
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财政年份:2010
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负责人:Alexander K. Murashov
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依托单位:
海外基金