Structure and function of Myosin VI
Structure and function of Myosin VI
批准号:
7320558
负责人:
H Lee Sweeney
金额:
$40.32万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2012-06-30
关键词:
AddressAltretamineBindingBiologicalBiological AssayCellsChimera organismCollaborationsDependenceDiffuseDimerizationDrosophila genusEngineeringFibroblastsFluorescence Resonance Energy TransferGlycineGoalsGolgi ApparatusHeadHumanIn VitroKineticsKnockout MiceLeadLengthLeucineMeasuresMicrofilamentsMolecular ConformationMorphologyMotorMotor ActivityMovementMutationMyosin ATPaseMyosin Type VNatureNucleotidesNumbersPanthera oncaPhosphorylationPositioning AttributePurposeRelative (related person)Research PersonnelResolutionRoleRunningStereociliumStructureTailTestingTransgenic MiceUpper armWorkZebrafishcell motilitycellular targetingcrosslinkdeafnessdimerin vivoinorganic phosphatemonomermutantmyosin VInovelprogramssize
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Myosin VI is perhaps the most unconventional of unconventional myosins. It uses a number of unique mechanisms that are not well understood to accomplish processive movements of similar step sizes to myosin V, but of opposite directionality, for the purposes of anchoring and transporting within cells. Myosin VI can exist as a monomer or a dimer, the cellular significance of which is poorly understood. This project will utilize in vitro expression and functional assays, structural determinations and in vivo assays to attempt to further our understanding of how myosin VI functions and what these molecules do in a cell. These goals will be realized by addressing the following specific aims: Aim 1. What are the adaptations in the myosin VI converter that create a large and variable (but inherently plus-end directed) step size? Hypothesis: While the unique insert at the end of the myosin VI converter, insert 2, is solely responsible for the reversal of directionality of myosin VI, the myosin VI converter has additional adaptations that allow a unique pre-powerstroke state and create a large and variable step size. Aim 2. What is the nature and purpose of the unusual myosin VI lever arm + extension? Hypothesis: The large step size of myosin VI is in part due to the unusual movements and conformations of its converter, which creates a larger swing (powerstroke) than for myosin V. With this larger swing, a shorter lever arm can provide the same step size as the myosin V lever arm. Aim 3. Further probe the mechanism of head gating during processivity Hypothesis: The unique insert, insert 1, of myosin VI is responsible for slow ATP binding, which becomes still slower with reverse strain, while ADP has access to the nucleotide binding pocket. This allows gating of the lead head of a dimer, as well as anchoring of a dimer. Aim 4. How does myosin VI dimerize and does it function as a dimer or monomer in cells? (collaboration with Karen Avraham) Hypothesis: Myosin VI dimerization is regulated by cargo interactions. We propose that the regulated dimerization obviates the need to regulate motor activity.
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财政年份:2007
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Administrative & Training Core
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财政年份:2007
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财政年份:2007
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依托单位:
Regulation and Mechano-Chemistry of Myosins V and VI
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资助金额:$154.96万
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依托单位:
Core A - Admin Core
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批准号:10459579
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项目类别:
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资助金额:$3.43万
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依托单位:
Co-Fund NIHLBI
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项目类别:
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资助金额:$38.0万
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负责人:H Lee Sweeney
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依托单位:
CO_FUND
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依托单位: