Regulation of Membrane-Cortical Cytoskeleton Crosstalk by WASH
Regulation of Membrane-Cortical Cytoskeleton Crosstalk by WASH
批准号:
8293038
负责人:
SUSAN M PARKHURST
金额:
$35.04万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-07-01 至 2015-06-30
关键词:
ActinsAdhesionsAnimal ModelAnimalsArchitectureBindingBiochemicalBioinformaticsBiologicalBiologyBundlingCell NucleusCell membraneCell physiologyCellsComplexContusionsCytoplasmCytoskeletal ProteinsCytoskeletonDevelopmentDiseaseDrosophila genusEczemaEffectivenessEndocytosisEngineeringEntamoebaEventExhibitsExocytosisFamilyFamily memberFilamentGoalsGuanosine Triphosphate PhosphohydrolasesHemocytesHemorrhageHumanImageImmuneImmune responseInfectionInflammatoryLaminsLearningLifeLinkMalignant NeoplasmsMediatingMembraneMicrofilamentsMicroscopicMicrotubule BundleMicrotubulesMolecularMorphogenesisMorphologyMovementMutationNamesNeoplasm MetastasisNuclearNuclear EnvelopeOocytesOogenesisOrganismOutcomePathway interactionsPatternPharmaceutical PreparationsPhysiologicalProcessPropertyProtein FamilyProteinsProteomicsReagentRegulationResolutionRoleShapesSignal TransductionSiteStructureSymptomsSystemTechniquesVesicleWhole OrganismWiskott-Aldrich SyndromeWorkangiogenesisbasebody systemcell motilitycomparativecrosslinkdevelopmental geneticsflyin vivoin vivo Modelinformation gatheringinsightmacrophagemembermigrationnovelpathogenpolymerizationresearch studyresponserhotherapeutic developmenttrafficking
中文摘要
描述(由申请人提供):质膜和下层皮质细胞骨架经历连续的动态相互作用,这是许多基本细胞过程所必需的,包括信号转导、迁移、胞内/胞外作用以及细胞间和细胞内附着/粘附。因此,调节这些相互作用及其功能的蛋白质在生物学中具有普遍的重要性。Wiskott Aldrich综合征(WAS)蛋白家族作为Rho家族GTP酶的效应物,通过Arp 2/3复合物起作用。WAS家族的两个创始成员WASP和SCAR/WAVE参与膜-细胞骨架相互作用,这些相互作用对于包括膜/囊泡运输、形态发生、血管生成、炎性免疫应答在内的过程很重要,并且当被错误调节时,参与病原体感染、出血/瘀伤、免疫缺陷和癌症转移。我们最近发现了WAS家族蛋白的第三个亚家族,命名为WASH,它是从内阿米巴到人类的保守蛋白。该提案的长期目标是描述WASH的细胞质和细胞核功能以及这些过程出错的发育后果。本提案的具体目标是:1)使用遗传、发育、分子/生物化学和细胞生物学方法确定WASH在调节肌动蛋白和微管细胞骨架协调以及细胞间隙-膜串扰中的作用; 2)描述WASH在血细胞发育和趋化迁移中的功能机制;和3)使用比较生物信息学、细胞生物学和高分辨率显微镜方法的组合来研究WASH对核结构和组织的影响。丰富的技术,复杂的活成像,并在果蝇中可用的试剂,使其成为一个优秀的,遗传操纵,生物体研究体内的WASH功能。从这些项目中获得的结果预计将产生广泛的影响,因为WASH在整个生物体中得到保护。WASH也将作为一个参考蛋白,揭示一般的组织原则和/或机制的作用,其他肌动蛋白结合和细胞质(细胞骨架)蛋白/家庭,并将提供新的洞察机制控制普遍的分子和细胞生物学事件的细胞核内外。这些项目中收集的信息对于了解WASH如何在正常发育中或在疾病状态下错误调节时控制关键细胞过程,以及从长远来看,对于新的抗病药物和/或疗法的潜在开发,或提高现有治疗的有效性将是重要的。
英文摘要
DESCRIPTION (provided by applicant): The plasma membrane and the underlying cortical cytoskeleton undergo continuous dynamic interplay that is necessary for many essential cellular processes, including signal transduction, migration, endo-/exo-cytosis, and inter- and intra-cellular attachments/adhesion. Thus, the proteins that regulate these interactions and their function are of general importance in biology. The Wiskott Aldrich Syndrome (WAS) protein family, which act as effectors of Rho family GTPases, polymerize actin through the Arp2/3 complex. The two founding WAS family members, WASP and SCAR/WAVE, are involved in membrane-cytoskeletal interactions important for processes including membrane/vesicle trafficking, morphogenesis, angiogenesis, inflammatory immune response, and when mis-regulated, in pathogen infection, bleeding/bruising, immune deficiency and cancer metastasis. We have recently identified a third subfamily of WAS family proteins, designated WASH, that is conserved from Entamoeba to humans. The long-term goal of this proposal is to delineate both the cytoplasmic and nuclear function(s) of WASH and the developmental consequences of these processes going awry. The specific aims of this proposal are 1) to determine the role(s) of WASH in the regulation of actin and microtubule cytoskeletal coordination and cytoskeletal-membrane crosstalk using genetic, developmental, molecular/biochemical, and cell biological approaches; 2) to delineate the mechanisms of WASH function in hemocyte developmental and chemotactic migrations; and 3) to investigate the effect of WASH on nuclear architecture and organization using a combination of comparative bioinformatic, cell biological, and high-resolution microscopic approaches. The wealth of techniques, sophisticated live imaging, and reagents available in Drosophila make it an excellent, genetically manipulable, organism for studying the functions of WASH in vivo. Results obtained from these projects are expected to have wide implications as WASH is conserved throughout organisms. WASH will also serve as a reference protein for revealing general organizational principles and/or mechanisms for the roles of other actin-binding and cytoplasmic (cytoskeletal) proteins/families and will provide new insight into mechanisms controlling universal molecular and cell biological events both in and out of the nucleus. The information gathered in these projects will be important for understanding how WASH functions to control key cellular processes in normal development or when mis-regulated in disease states, and in the longer term, for the potential development of novel anti- disease drugs and/or therapies, or to enhance the effectiveness of existing treatments.
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