MicroRNA Regulation of Ovarian Function
MicroRNA Regulation of Ovarian Function
批准号:
8277809
负责人:
LANE K. CHRISTENSON
金额:
$26.68万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-06-01 至 2015-05-31
关键词:
AffectAgeAnimal ModelApoptosisApplications GrantsBindingCell Differentiation processCell physiologyCompetenceContraceptive AgentsContraceptive methodsDataData SetDefectDevelopmentElectrophoretic Mobility Shift AssayEnzymesEventFertilityFunctional disorderGene ChipsGene ExpressionGene Expression RegulationGene TargetingGenesGoalsHypertrophyInfertilityKnockout MiceKnowledgeLaboratoriesLinkLuteinizationLuteinizing HormoneMediatingMeiosisMessenger RNAMicroRNAsMolecularMusOocytesOutcomeOvarianOvarian Granulosa CellOvarian TissueOvaryOvulationPathway interactionsPhysiologicalPhysiological ProcessesPhysiologyPlayPositioning AttributePost-Transcriptional RegulationPrincipal InvestigatorProcessProgesterone ReceptorsProteomicsPublicationsQuality of lifeRecruitment ActivityRegulationReproductive HealthResearchResearch PersonnelRoleShort luteal phaseSignal TransductionSomatic CellSyndromeSystemTechniquesTestingTherapeutic InterventionTimeTissuesTranscriptTranslationsWomanWorkanalytical methodbasecell growthchromatin immunoprecipitationcorpus luteumexperiencegranulosa cellhigh throughput analysisimprovedin vivoin vivo Modelinnovationmathematical modelpromoterprotein expressionpublic health relevancereceptorreproductivereproductive successresearch studyresponsetranscription factortreatment strategy
中文摘要
描述(申请人提供):避孕和不育是育龄妇女面临的两大生活质量问题。受精卵母细胞的排卵和功能性黄体的形成是生殖成功的绝对要求,是由周期中期黄体生成素(LH)的激增引起的。黄体生成素作用被破坏是不孕不育的主要原因,也是许多避孕方法的目标。许多研究已经描述了LH作用下游的信号级联和转录反应;我们对黄体生成素及其受体如何调节排卵、减数分裂恢复和黄体生成等复杂生理过程的理解取得了巨大进展。然而,重要的问题仍然没有解决或未探索,包括基因表达的转录后调控在介导LH作用中的作用。我们最近对Dicer1缺陷小鼠的研究表明,转录后和特异性microRNA介导的基因调控在排卵中起着关键作用。我们还鉴定出miR-21是卵泡颗粒细胞中LH诱导的microRNA (miRNA),并证明它通过促进全局翻译抑制细胞凋亡并增强颗粒细胞肥大。此外,我们目前的体内研究表明,miR-21的缺失会降低排卵率。因此,本提案的中心假设是miR-21在lh诱导的卵巢功能中起关键作用。为了验证这一中心假设,在特异性目的1中,我们确定了miR-21在排卵期卵泡颗粒细胞中的功能及其在排卵、黄体化和卵母细胞能力中的作用。在Specific Aim 2中,我们确定了miR-21在围排卵颗粒细胞内调节的靶转录物和分子途径,而在Specific Aim 3中,我们确定了哪些lh诱导的转录因子调节miR-21基因表达。本资助申请中提出的研究将定义由miR-21介导的转录后基因调控调控的基因子集,并将该miRNA与对卵巢功能至关重要的生理和发育事件在功能上联系起来。这项研究的长期益处将增强我们对卵巢的理解,最终影响不孕不育治疗策略的发展和女性新的避孕方法。
英文摘要
DESCRIPTION (provided by applicant): Contraception and infertility are two major quality of life issues facing women of reproductive age. Ovulation of a fertilizable oocyte and formation of a functional corpus luteum are absolute requirements for reproductive success and are induced by the mid-cycle surge of luteinizing hormone (LH). Disrupted LH actions are a leading cause of infertility and a target of many contraceptive methods. Numerous studies have characterized the signaling cascades and transcriptional responses downstream of LH action; and dramatic progress in our understanding of how LH and its receptor are able to regulate such complicated physiological processes such as ovulation, resumption of meiosis and luteinization have resulted. However, significant questions still remain unsolved or unexplored, including the role post-transcriptional regulation of gene expression plays in mediating LH action. Our recent studies with Dicer1 deficient mice have implicated post-transcriptional and specifically microRNA mediated gene regulation as playing a key role in ovulation. We have also identified miR-21 as an LH- induced microRNA (miRNA) within granulosa cells of the periovulatory follicle, and demonstrated that it suppresses apoptosis and enhances granulosa cell hypertrophy by promoting global translation. Furthermore, our current in vivo studies demonstrate that loss of miR-21 decreases ovulation rate. Therefore, the central hypothesis of this proposal is that miR-21 plays critical roles in the LH-induced ovarian function. To test this central hypothesis, in Specific Aim1, we determine the function of miR-21 within periovulatory follicular granulosa cells and its role in ovulation, luteinization and oocyte competence. In Specific Aim 2, we identify the target transcripts and molecular pathways miR-21 regulates within periovulatory granulosa cells, while in Specific Aim 3 we determine which LH-induced transcription factors modulate miR-21 gene expression. The studies proposed in this grant application will define a subset of genes regulated by miR-21 mediated post-transcriptional gene regulation and will functionally link this miRNA with physiologic and developmental events critical to ovarian function. The long-term benefits of this research will enhance our understanding of the ovary, ultimately impacting the development of treatment strategies for infertility and new contraceptive methods for women.
PUBLIC HEALTH RELEVANCE: Infertility due to ovarian dysfunction such as polycystic ovarian syndrome, short luteal phase defects and compromised oocyte quality result from disrupted and abnormal cellular interactions occurring within the periovulatory follicle. Identifying the factors and their mechanisms of action that regulate ovarian function will provide targets for therapeutic intervention. The long-term benefits of this research will enhance our understanding of the ovary, ultimately impacting the development of treatment strategies that will improve the reproductive health of women.
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