Are sperm-borne small RNAs important?
Are sperm-borne small RNAs important?
批准号:
8514666
负责人:
Wei Yan
金额:
$13.37万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-01 至 2014-07-31
关键词:
AblationBiogenesisChromatinCongenital AbnormalityCytoplasmDNADataDefectDevelopmentDicer EnzymeEmbryo DeathsEmbryonic DevelopmentEventFailureFertilizationFertilization failureFunctional RNAFunding MechanismsGene Expression ProfileGerm CellsHistonesHumanIn VitroInfertilityInjection of therapeutic agentIntracytoplasmic Sperm InjectionsIonsKaryotypeKnock-outKnockout MiceLeadLifeMessenger RNAMusNegative FindingOocytesPhenotypePhilosophyPhysiologicalPlayPopulationPre-implantation Embryo DevelopmentPromoter RegionsRNAReportingRibonuclease IIIRibonucleasesRoleSiteSmall RNASperm HeadSpermatogenesisSpontaneous abortionTechnologyTestingTimeTranscriptbasecDNA Librarydeep sequencingdosageegghigh rewardhigh riskhuman DICER1 proteinmalenext generationnovelpreimplantationpupresearch studysperm cell
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): It is well known that both mouse and human sperm carry numerous messenger RNAs and small non-coding RNAs into eggs during fertilization. Are these paternal RNAs essential for fertilization and early embryonic development? If so, what do these sperm-borne RNA molecules do once inside the cytoplasm of the egg? Theses fundamental questions remain unanswered because these RNA molecules are hidden deeply inside the highly compacted sperm chromatin. Thus, these sperm- borne RNA species are almost totally inaccessible without disrupting paternal DNA. We have generated two conditional knockout mouse lines, which produce sperm lacking miRNAs and/or endo-siRNAs. We will use these small non-coding RNA- deficient sperm to perform intracytoplasmic sperm injection (ICSI) to observe the fertilization rate and early embryonic development (Aim2). The RNA contents in these small RNA-deficient sperm will also be defined in comparison to those in normal wild-type sperm (Aim1). A negative finding would suggest that at least these two sperm-borne small non-coding RNA species are dispensable for fertilization and/or early embryonic development. However, if these two small RNA species are found to be essential for fertilization and/or embryonic development, then a more thorough study is
warranted because the paternal contribution to fertilization or even early embryonic development has been hypothesized for a long time and it represents one of the most fundamental questions about factors that are required for the beginning of a life. Therefore, this exploratory study fits the high risk, high reward philosophy of the R2 funding mechanism.
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科研奖励(0)
会议论文
The XXVIth North American Testis Workshop
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批准号:10236692
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依托单位:
Epitranscriptomic regulation of spermatogenesis and male fertility
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Epitranscriptomic regulation of spermatogenesis and male fertility
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Epitranscriptomic regulation of spermatogenesis and male fertility
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资助金额:$37.6万
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Center for Male Reproductive Epigenomics
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Mechanism Underlying the Transduction of Epimutations from the Soma to the Male Germline
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