Analysis of the role of the VRK1 protein kinase in mammalian fertility
Analysis of the role of the VRK1 protein kinase in mammalian fertility
批准号:
8130608
负责人:
Paula Traktman
金额:
$18.36万
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:
2010-08-23 至 2013-07-31
关键词:
AffectAllelesAnimalsCaenorhabditis elegansCell NucleusCell Proliferation RegulationCell divisionCellsChromosome abnormalityDataDefectDevelopmentDrosophila genusEmbryoEnsureEnzymesEquilibriumEukaryotic CellFamilyFemaleFertilityFertilizationFission YeastGametogenesisGene TargetingGenomeGrantHealthHumanInfertilityIntracellular MembranesInvertebratesMaintenanceMale ContraceptionsMale Contraceptive AgentsMale InfertilityMammalsMediatingMeiosisMitoticMusOocytesOogenesisOrganismOrthologous GeneOvarian FollicleOvaryOvulationPhasePhenotypePhosphorylationPlayProcessProliferatingProtein KinaseProtein phosphataseProteinsRegulationReproductionRoleSaccharomycetalesSignal PathwaySignal TransductionSpermatogenesisSpermatogoniaStagingStem cellsSterilityStratum BasaleTestingWorkcasein kinasecell growthcombatextracellulargranulosa cellinsightmalenext generationnovelnovel strategiesoocyte maturationoverexpressionparalogous genepublic health relevanceself-renewalsertoli celltransmission processtumorigenesis
中文摘要
描述(由申请人提供):配子发生是一个高度调节的过程,对动物物种的维持具有深远的重要性。配子发生错误的后果从不育到将染色体异常传递给下一代。然而,对精子发生和卵子发生都至关重要的信号级联仍然知之甚少。由蛋白激酶和磷酸酶介导的动态蛋白磷酸化是真核细胞用于确保有丝分裂和减数分裂细胞分裂的阶段以正确的顺序发生并且仅当细胞内和细胞外条件有利时的主要机制之一。 该项目的重点是VRK 1蛋白激酶,它参与从无脊椎动物到哺乳动物的生物体中细胞增殖的调节。VRK 1在果蝇和C.线虫是必需蛋白质,其破坏导致与减数分裂缺陷相关的不育。最近,我们已经产生了基因靶向小鼠,是VRK 1的表达亚型。在纯合状态下,雄性和雌性VRK 1缺陷小鼠都是不育的,这表明VRK在生育中的作用在进化上是保守的。在雄性小鼠中,这种不育与精原细胞的严重和进行性损失有关。在本提案的目标1中,我们将进一步研究这种表型,并检验VRK 1缺失导致精原干细胞增殖和/或分化中细胞自主缺陷的假设。我们还将探讨另一种假设,即VRK 1缺陷型支持细胞不能提供一个有能力支持持续精子发生的小生境。VRK 1表达亚型的雌性小鼠也是不育的;因此,了解VRK 1缺失如何影响雌性生育力将是本提案目标2的重点。有趣的是,与雄性的缺陷相反,初步的组织学分析显示,VRK缺陷小鼠的卵泡成熟和排卵正常进行。因此,我们假设,在卵母细胞,VRK 1可能是最关键的恢复和完成减数分裂。 我们的初步数据提供了VRK 1在哺乳动物配子发生中起关键作用的第一个证据。由于其耗尽而导致的严重不育表明,对VRK 1的更深入了解可能会提供与人类生殖显著相关的新见解。更深入地了解调控配子发生的信号通路,将提供新的方法来对抗不育症和男性避孕药的发展的新目标。
公共卫生相关性:我们对VRK 1蛋白激酶及其对男性和女性生育力的贡献的研究对人类健康具有重要意义。了解VRK 1介导的信号通路如何影响精子发生和卵子发生,将加深我们对人类不育原因的理解,并阐明男性避孕的新靶点。
英文摘要
DESCRIPTION (provided by applicant): Gametogenesis is a highly regulated process that has profound importance for the maintenance of animal species. Errors in gametogenesis have consequences that range from infertility to the transmission of chromosome abnormalities to the next generation. However, the signaling cascades critical to both spermatogenesis and oogenesis are still poorly understood. Dynamic protein phosphorylation, mediated by protein kinases and phosphatases, is one of the major mechanisms used by eukaryotic cells to ensure that the phases of mitotic and meiotic cell division occur in the correct sequence and only when intracellular and extracellular conditions are favorable. The focus of this project is the VRK1 protein kinase, which is involved in the regulation of cell proliferation in organisms ranging from invertebrates to mammals. The VRK1 orthologs in Drosophila and C. elegans are essential proteins whose disruption causes sterility associated with meiotic defects. Recently, we have generated gene-targeted mice that are hypomorphic for the expression of VRK1. In the homozygous state, both the male and female VRK1-deficient mice are infertile, indicating that the role of VRK in fertility is evolutionarily conserved. In male mice, this infertility is associated with a severe and progressive loss of spermatogonia. In Aim 1 of this proposal, we will investigate this phenotype further and test the hypothesis that VRK1 depletion leads to a cell-autonomous defect in the proliferation and/or differentiation of spermatogonial stem cells. We will also explore the alternative hypothesis that VRK1- deficient Sertoli cells cannot provide a niche that is competent to support ongoing spermatogenesis. Female mice that are hypomorphic for VRK1 expression are also infertile; understanding how VRK1 depletion impacts female fertility will therefore be the focus of Aim 2 of this proposal. Interestingly, in contrast to the defect in males, preliminary histological analyses reveal that maturation of ovarian follicles and ovulation proceed normally in VRK-deficient mice. We therefore hypothesize that, within oocytes, VRK1 may be most critical for the resumption and completion of meiosis. Our preliminary data provides the first evidence that VRK1 plays a key role in mammalian gametogenesis. The severe infertility that results from its depletion suggests that a greater understanding of VRK1 may provide novel insights of significant relevance to human reproduction. A deeper understanding of the signaling pathways that regulate gametogenesis will provide new approaches with which to combat infertility and new targets for the development of male contraceptives.
PUBLIC HEALTH RELEVANCE: Our studies of the VRK1 protein kinase and its contribution to male and female fertility have important implications for human health. Understanding how the signaling pathways mediated by VRK1 affect spermatogenesis and oogenesis will deepen our understanding of the causes of human infertility and elucidate new targets for male contraception.
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