Regulation of Spindle Positioning
Regulation of Spindle Positioning
批准号:
9897569
负责人:
Steven M Markus
金额:
$29.64万
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-05-01 至 2022-03-31
关键词:
Adaptor Signaling ProteinAffectAnimal ModelApplications GrantsBindingBiologicalBiological ModelsBiological ProcessBiophysicsCardiacCell Differentiation processCell NucleusCell divisionCell physiologyCellsCollaborationsComplexCytokinesisDefectDevelopmentDevelopmental ProcessDynein ATPaseEffector CellEnsureEventFutureGeneticGeometryGoalsHealthHomeostasisHomologous GeneHumanImageImpairmentIn VitroLIS1 proteinLaboratoriesLeadLifeLightLinkMaintenanceMalignant NeoplasmsMediatingMicrotubulesMinus End of the MicrotubuleMitotic spindleMolecularMolecular MotorsMothersMotorMovementNeckOrganOrganismPositioning AttributeProcessProteinsRegulationResearchRoleSaccharomycetalesSiteTestingTherapeutic InterventionTimeTissuesYeastsbasebiophysical techniquescancer initiationcell cortexcell motilitycell typedaughter celldevelopmental diseasedynactineffective therapygenetic regulatory proteinhuman diseasein vivoinsightlink proteinlissencephalynew therapeutic targetpreventprogenitorprogramsprotein purificationpublic health relevancereceptorsingle moleculestem cell divisionstem cellstumor progression
中文摘要
描述(由申请人提供):在许多组织类型中,细胞命运和随后的组织结构由有丝分裂纺锤体相对于细胞边界的方向决定。在生物体发育和组织稳态等过程中,纺锤体方向决定了细胞分裂的平面,从而决定了细胞是对称分裂还是不对称分裂。对称的干细胞分裂产生两个相同的干细胞,而转换到不对称分裂产生一个干细胞和一个分化的细胞。因此,纺锤体位置与组织或细胞类型的特定需要的适当协调在许多生物过程中是至关重要的。不正确的纺锤体方向会损害不对称的干细胞分裂,损害分化,并导致组织发育和体内平衡的缺陷。事实上,未经检查的对称和不对称分裂都与癌症的发生和发展直接相关。纺锤体定向的关键效应子是分子马达细胞质动力蛋白。这个马达锚定在细胞皮层,通过与微管精确调谐的相互作用来定向纺锤体。目前还不清楚皮质锚定动力蛋白马达如何通过适当的方向和时间控制来执行此功能,以实现适当的组织特异性功能。缺乏这种信息阻碍了开发有效的治疗方法,这些治疗方法可以预防或逆转可能导致发育障碍或癌症的组织缺陷。在拟议的研究中,我们将使用简单的模式生物芽殖酵母-其中动力蛋白及其许多调节剂是高度保守的-和体内,体外和生物物理方法的组合,以确定动力蛋白被激活,以执行其纺锤体取向功能的机制,并调节,以实现适当的定向偏置的纺锤体运动。我们的具体目标是:(1)确定皮质动力蛋白活动是如何启动的,(2)确定动力蛋白介导的纺锤体运动是如何定向偏置的。
英文摘要
DESCRIPTION (provided by applicant): In many tissue types, cell fate and consequent tissue organization are dictated by the orientation of the mitotic spindle with respect to the cell boundaries. During such processes as organismal development and tissue homeostasis, spindle orientation dictates the plane of cell division, and thus whether a cell divides symmetrically or asymmetrically. Symmetric stem cell divisions result in two identical stem cells, whereas a switch to asymmetric division results in one stem cell and a differentiated cell. Thus, proper coordination of spindle position with the particular needs of a tissue or cell type is critial during numerous biological processes. Improper spindle orientation can compromise asymmetric stem cell divisions, impair differentiation, and lead to defects in tissue development and homeostasis. In fact, unchecked symmetric and asymmetric divisions have both been directly linked to cancer initiation and progression. A key effector of spindle orientation is the molecular motor cytoplasmic dynein. This motor is anchored at the cell cortex from where it orients the spindle through precisely tuned interactions with microtubules. It is unclear how cortically anchored dynein motors perform this function with appropriate directional and temporal control to achieve proper tissue specific functions. The lack of such information presents an impediment towards the development of effective therapies that may prevent or reverse defects in tissue organization that can lead to developmental disorders or cancer. In the proposed studies, we will use the simple model organism budding yeast - in which dynein and many of its regulators are highly conserved - and a combination of in vivo, in vitro, and biophysical methods to determine the mechanisms by which dynein is activated to perform its spindle orientation function, and regulated to achieve appropriate directionally biased spindle movements. Our specific aims are: (1) determine how cortical dynein activity is switched on, and (2) determine how dynein-mediated spindle movements are directionally biased.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
Regulation of Dynein-Mediated Transport
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批准号:10582347
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项目类别:
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资助金额:$24.96万
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财政年份:2021
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负责人:Steven M Markus
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依托单位:
Regulation of Dynein-Mediated Transport
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批准号:10676131
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项目类别:
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资助金额:$37.14万
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财政年份:2021
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负责人:Steven M Markus
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依托单位:
Regulation of Dynein-Mediated Transport
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批准号:10451492
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项目类别:
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资助金额:$37.14万
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财政年份:2021
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负责人:Steven M Markus
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依托单位:
Regulation of Spindle Positioning
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批准号:9267486
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项目类别:
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资助金额:$29.6万
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财政年份:2016
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负责人:Steven M Markus
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依托单位:
Regulation of Spindle Positioning
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批准号:9080165
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项目类别:
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资助金额:$29.43万
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财政年份:2016
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负责人:Steven M Markus
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依托单位:
海外基金