Structure and Mechanism of the RISC-loading Complex
Structure and Mechanism of the RISC-loading Complex
批准号:
7931265
负责人:
IAN JOHN MACRAE
金额:
$5.03万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-30 至 2010-08-31
关键词:
AnimalsArchitectureBase PairingBase SequenceBiochemicalBiochemistryBiological ProcessBiologyBrainCell ProliferationCell physiologyCellsComplexDevelopmentDockingDouble-Stranded RNAElectron MicroscopyEventFamilyGene ExpressionGene Expression RegulationGene SilencingGenesGoalsGuide RNAHomologous ProteinHumanKineticsLearningLongevityMalignant NeoplasmsMapsMediatingMemoryMicroRNAsModelingMolecularMolecular StructureNucleic acid sequencingNucleotidesPathway interactionsPlayProcessPropertyProteinsRNARNA InterferenceRNA Interference PathwayRNA ProcessingRNA-Induced Silencing ComplexRecombinantsRegulationRegulatory ElementResearchResolutionRibonucleoproteinsRoleSiteSmall Interfering RNAStagingStructureTherapeuticTherapeutic InterventionTimeTranslational RepressionWorkbasehuman diseaseinsightmacromolecular assemblymutantnovelparticleprogramsprotein complexprotein structurepublic health relevancereconstitutionresearch studystem cell divisionstructural biologythree dimensional structure
中文摘要
描述(由申请人提供):微rna (miRNA)是一类丰富的22个核苷酸的调控元件,指导哺乳动物基因的沉默,并有助于广泛的细胞过程,包括发育时间,寿命,大脑发育,细胞增殖和癌症。miRNA途径的一个关键步骤是将miRNA组装成一种活性形式,即称为RISC的大型核糖核蛋白复合物。该项目旨在表征RISC的组装,重点是理解mirna加工和加载到RISC中的结构细节。研究的重点是一种称为risc加载复合体(RLC)的三蛋白组装。结合生物化学和结构生物学,我们将确定RLC机制的关键特征,这些特征可能被用于治疗目的。生物化学方面的努力将集中在剖析miRNA识别和加工效率的机制上。电子显微镜将用于确定RLC的分子结构,这将指导进一步的生化实验。我们的目标是确定在risc加载的关键步骤中停滞的RLC的分子结构,以充分可视化这一重要的细胞过程。这些结合结构和功能的研究将为控制哺乳动物基因表达的最基本但最不为人所知的途径之一提供全面的机制见解。公共卫生相关性:RNA干扰(RNAi)是人类基因关闭或“沉默”的自然过程,涉及从寿命到大脑发育到癌症等各种生物功能。该项目旨在了解决定哪些基因将被RNAi沉默的分子机制。结果将有助于持续努力利用RNAi过程作为一种强大的新型治疗人类疾病的疗法。
英文摘要
DESCRIPTION (provided by applicant): Micro-RNAs (miRNA) are an abundant class of 22-nucleotide regulatory elements that guide the silencing of mammalian genes and contribute to broad range of cellular processes including developmental timing, life span, brain development, cell proliferation, and cancer. A critical step in the miRNA pathway is the assembly of miRNAs into an active form, a large ribonucleoprotein complex called RISC. This project aims to characterize the assembly of RISC with an emphasis on understanding the structural details underlying processing and loading of miRNAs into RISC. Research is focused on a three-protein assembly termed the RISC-loading complex (RLC). Using a combination of biochemistry and structural biology we will identify key features of the RLC mechanism that may be exploited for therapeutic purposes. Biochemical efforts will focus on dissecting the mechanisms underlying miRNA recognition and processing efficiency. Electron microscopy will be used to determine the molecular architecture of the RLC, which will guide further biochemical experiments. We aim to determine molecular structures of the RLC stalled at key steps in RISC-loading to fully visualize this essential cellular process. These combined structural and functional studies will provide comprehensive mechanistic insights into one of the most fundamental but least understood pathways of controlling mammalian gene expression. PUBLIC HEALTH RELEVANCE: RNA interference (RNAi) is a natural process by which human genes are turned off, or "silenced", which is involved in biological functions ranging from life span, to brain development, to cancer. This project aims to understand the molecular machinery that decides which genes will be silenced by RNAi. Results will contribute to on-going efforts to harness the RNAi process as a powerful new type of therapeutic for the treatment of human disease.
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依托单位:
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资助金额:$36.01万
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依托单位:
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资助金额:$0.03万
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