Regulators of Centriole Duplication and Structure
Regulators of Centriole Duplication and Structure
批准号:
7875565
负责人:
Kevin C Slep
金额:
$7.4万
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:
2010-04-10 至 2012-03-31
关键词:
AddressAdultAneuploidyBardet-Biedl SyndromeBindingBiogenesisBiological AssayBlindnessBoxingC-terminalCell Culture TechniquesCell CycleCell PolarityCell divisionCellsCentriolesCentrosomeChemotaxisChildChromosomesCiliaComplexCoupledCrystallizationCystic Kidney DiseasesCytoskeletonDataDefectDependenceDevelopmentDiseaseDown SyndromeDrosophila genusEnsureEukaryotaHealthHumanHydrocephalusImaging TechniquesIn VitroIntegration Host FactorsInterphaseInterventionInvestigationLeftLicensingLicensing FactorLightMeasuresMedicalMicrotubulesMitotic spindleMolecularMothersMutationN-terminalNeural Tube ClosureNewborn InfantObesityOrganellesOrganismPeptidesPhosphorylationPhosphotransferasesPlayPolo-Box DomainPolydactylyPolymersPrimary Ciliary DyskinesiasProcessProtein-Serine-Threonine KinasesProteinsPublic HealthRNA InterferenceRandomizedReactionResearchResolutionRetinitis PigmentosaRoleSeriesSignal TransductionSiteSitus InversusSpecificityStructureTranslatingTubulinWorkX-Ray Crystallographycell motilitycilium biogenesisextracellularfluid flowhuman PLK1 proteininsightintercellular communicationmutantresearch studysmall moleculetherapeutic target
中文摘要
描述(由申请人提供):中心粒是真核生物的主要细胞器,负责极化细胞骨架、双极性有丝分裂纺锤体和纤毛的形成,包括活动的和初级的。中心粒依赖过程的缺陷导致由染色体错误分离、细胞迁移缺陷和异常纤毛形成引起的广泛的发育性疾病,包括但不限于唐氏综合征、视网膜色素变性、多指畸形、倒位、脑积水、肥胖和Bardet-Biedl综合征。中心粒生物发生与细胞周期紧密耦合,由一系列因素调节,确保每个细胞周期中心粒复制一次且仅一次。负责中心粒复制的主要许可因子是球样激酶4 (Plk4)。Plk4的作用机制以及Plk4的一个中心保守结构域在调节激酶特异性和激酶活性中的作用仍有待确定。该应用提出了Plk4独特的中心保守结构域在调节激酶活性和底物识别中起关键作用的假设。
英文摘要
DESCRIPTION (Provided by Applicant): The centriole is a major organelle in eukaryotes, responsible for formation of a polarized cytoskeleton, the bipolar mitotic spindle, and cilia, both motile and primary. Defects in centriole dependent processes result in a wide spectrum of developmental diseases caused by chromosome missegregation, cell migration defects, and abnormal cilia formation including, but not limited to, Down syndrome, retinitis pigmentosa, polydactyly, situs inversus, hydrocephalus, obesity, and Bardet-Biedl syndrome. Centriole biogenesis is tightly coupled to the cell cycle, regulated by a host of factors that ensure centriole duplication is licensed once and only once per cell cycle. A master licensing factor responsible for centriole duplication is the polo-like kinase 4 (Plk4). Plk4's mechanism of action and the role a central conserved domain in Plk4 plays to modulate kinase specificity and kinase activity remains to be determined. This application develops the hypothesis that Plk4's unique central conserved domain plays a critical role in modulating kinase activity and substrate recognition.
Three series of experiments examine the role of Plk4's central conserved domain in modulating kinase activity and substrate recognition in relation to centriole duplication. Studies will focus on Drosophila Plk4 given the high level of research conducted on Drosophila Plk4 and the power and ease of translating findings into Drosophila developmental studies. The high degree of identity between human and Drosophila Plk4 facilitates the transfer of Drosophila Plk4 mechanistic insight directly to human Plk4 function. Thus, Specific Aim 1 is to define, at atomic resolution, the structure of Plk4's central domain and the determinants responsible for kinase domain binding. X-ray crystallography will be employed to determine the structure of the central domain alone and in complex with the kinase domain. Specific Aim 2 is to ascertain the role Plk4's central conserved domain plays in centriole duplication. High resolution fluorescent imaging techniques will be employed to examine the localization of Plk4 constructs and the effect these constructs have on centriole duplication. This examination will use Drosophila S2 cells depleted of endogenous Plk4 using RNAi. Specific Aim 3 is to determine the role of Plk4's central conserved domain on kinase activity. This study will use standard kinase assays to measure the activity of Plk4 constructs that include or lack the conserved central domain.
The long term objectives of this investigation are to ascertain the mechanism of Plk4-dependent centriole duplication, identify centriole-specific Plk4 binding and phosphorylation targets, as well as determine the downstream effectors these Plk4 targets interact with. A fundamental understanding of centriole biogenesis, identifying regulatory components and therapeutic targets, will enhance our understanding of centriole biogenesis in human health and development. Ameliorating defects in centriole-dependent processes, including bipolar mitotic spindle formation, cell migration, and ciliogenesis, will have far reaching medical implications in the development of healthy newborn children and the healthy, independent, and productive functioning of adults.
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会议论文
Mechanism of a Microtubule Polymerase Complex Critical for Axon Outgrowth
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批准号:10043009
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项目类别:
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资助金额:$15.55万
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财政年份:2020
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负责人:Kevin C Slep
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依托单位:
Molecular Mechanisms of Spectraplakins
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批准号:9118250
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项目类别:
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资助金额:$7.29万
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财政年份:2015
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负责人:Kevin C Slep
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依托单位:
Regulators of Centriole Duplication and Structure
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批准号:8059658
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项目类别:
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资助金额:$7.1万
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财政年份:2010
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负责人:Kevin C Slep
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依托单位:
海外基金