RNA Silencing Complex Assembly and Function
RNA Silencing Complex Assembly and Function
批准号:
7339644
负责人:
ERIK J. SONTHEIMER
金额:
$22.48万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-02-01 至 2010-01-31
关键词:
AddressBindingBiochemical PathwayBiochemistryBiological AssayBiologyBiomedical ResearchCellsChromatinCleaved cellComplexDepthDevelopmentDiseaseDouble-Stranded RNADrosophila genusDrosophila melanogasterEmbryoEukaryotaEukaryotic CellFunctional RNAGelGene ExpressionGenesGeneticGoalsIn VitroLinkMessenger RNAMicroRNAsMonitorPathway interactionsPlacementPropertyProtein BindingProteinsRNA InterferenceRNA Interference PathwayRNA-Induced Silencing ComplexRadiolabeledReportingResearchRibonucleoproteinsRibosomesSiteSmall Interfering RNASmall RNASomatic Cell GeneticsSpecific qualifier valueSystemTechniquesTherapeuticTranscriptTranslationsVirus Diseasesendonucleasegel electrophoresismRNA Transcript Degradationnovelradiotracerresearch studyresponsesizetool
中文摘要
描述(由申请人提供):来自不同真核生物的细胞响应于称为siRNA(短干扰RNA)和miRNA(微小RNA)的小RNA沉默同源基因表达。这些RNA沉默机制可以控制细胞基因的表达,指定特定染色质结构域的功能,并保护细胞免受病毒感染和转座子入侵。RNA沉默的一种形式,RNA干扰(RNAi),指导与siRNA共享序列同一性的mRNA转录物的特异性降解。转录本的破坏是由RNA诱导沉默复合物(RISC)执行的。这项研究的目的是利用体外RNAi活性的果蝇胚胎裂解物来确定RISC组装和功能的生化途径。已经报道了不同大小的果蝇RISC,但它们之间的关系尚不清楚,几乎不知道它们是如何组装的。此外,siRNA指导的核酸内切酶的身份仍然未知。我们已经开发了一种新的天然凝胶电泳分析,我们可以用来监测放射性标记的siRNA上形成的蛋白质复合物。我们已经使用该测定来鉴定至少三种复合物,其中两种(称为R1和R2)是RISC组装途径中的中间体。另一种复合物R3是一种非常大的(80 S)和潜在的核糖体相关形式的RISC,可以特异性识别和切割靶向mRNA。该项目旨在通过三种方式进一步定义RNAi途径:1)通过表征中间复合物并确定其组装成高阶沉默复合物的要求; 2)通过纯化R3复合物以鉴定这种新型RISC形式中存在的蛋白质;和3)通过使用位点特异性光交联来鉴定与靶mRNA的功能不同区域接触的RISC组分在RISC组装、激活和功能过程中,这些位点(包括切割位点)是相互作用的。
在首次发现RNA沉默的六年后,很明显,这些途径对生物学的许多方面都至关重要。此外,RNAi已成为一种不可或缺的实验工具,并有可能成为一种非常强大的治疗技术。因此,对RNA沉默途径的更深入了解将加速生物医学研究和疾病治疗的许多方面。
英文摘要
DESCRIPTION (provided by applicant): Cells from diverse eukaryotes silence cognate gene expression in response to small RNAs called siRNAs (short interfering RNAs) and miRNAs (microRNAs). These RNA silencing mechanisms can govern the expression of cellular genes, specify the functions of specific chromatin domains, and protect cells from viral infection and transposon invasion. One form of RNA silencing, RNA interference (RNAi), directs the specific degradation of mRNA transcripts that share sequence identity with an siRNA. Transcript destruction is executed by the RNA-induced silencing complex (RISC). The goal of the proposed research is to determine the biochemical pathway of RISC assembly and function, using Drosophila melanogaster embryo lysates that are active for RNAi in vitro. Drosophila RISCs of differing sizes have been reported, but the relationships between them are unclear, and almost nothing is known about how they assemble. Furthermore, the identity of the siRNA-directed endonuclease remains unknown. We have developed a novel native gel electrophoresis assay that we can use to monitor protein complexes that form on radiolabeled siRNA. We have used this assay to identify at least three complexes, two of which (called R1 and R2) are intermediates in a RISC assembly pathway. The other complex, R3, is a very large (80S) and potentially ribosome-associated form of RISC that can specifically recognize and cleave targeted mRNAs. This project aims to further define the RNAi pathway in three ways: 1) By characterizing the intermediate complexes and determining the requirements for their assembly into higher-order silencing complexes; 2) By purifying the R3 complex to identify proteins present within this novel form of RISC; and 3) By employing site-specific photocrosslinking to identify RISC components that contact functionally distinct regions of the target mRNA (including the cleavage site) during RISC assembly, activation and function.
Six years after the initial discovery of RNA silencing, it is clear that these pathways are vital to many facets of biology. Moreover, RNAi has become an indispensable experimental tool, and has the potential to become a very powerful therapeutic technique. Accordingly, a deeper understanding of RNA silencing pathways will accelerate many aspects of biomedical research and disease treatment.
期刊论文(6)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1126/science.1165771
发表时间:
2008-12-19
期刊:
Science (New York, N.Y.)
影响因子:
--
作者:
[Marraffini LA, Sontheimer EJ]
通讯作者:
Sontheimer EJ
DOI:
10.1016/j.molcel.2008.07.008
发表时间:
2008-08-08
期刊:
MOLECULAR CELL
影响因子:
16
作者:
[Golden, Daniel E., Gerbasi, Vincent R., Sontheimer, Erik J.]
通讯作者:
Sontheimer, Erik J.
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财政年份:--
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