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1.
Polycomb proteins targeted by a short repeat RNA to the mouse X chromosome   总被引:2,自引:0,他引:2  
To equalize X-chromosome dosages between the sexes, the female mammal inactivates one of her two X chromosomes. X-chromosome inactivation (XCI) is initiated by expression of Xist, a 17-kb noncoding RNA (ncRNA) that accumulates on the X in cis. Because interacting factors have not been isolated, the mechanism by which Xist induces silencing remains unknown. We discovered a 1.6-kilobase ncRNA (RepA) within Xist and identified the Polycomb complex, PRC2, as its direct target. PRC2 is initially recruited to the X by RepA RNA, with Ezh2 serving as the RNA binding subunit. The antisense Tsix RNA inhibits this interaction. RepA depletion abolishes full-length Xist induction and trimethylation on lysine 27 of histone H3 of the X. Likewise, PRC2 deficiency compromises Xist up-regulation. Therefore, RepA, together with PRC2, is required for the initiation and spread of XCI. We conclude that a ncRNA cofactor recruits Polycomb complexes to their target locus.  相似文献   

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RNA干涉(RNA interference,RNA1)是由双链RNA导入而引起的转录后基因沉默,它可以作为一种有力的工具在多种有机体中抑制特异性基因的表达。文章简要介绍了RNA干涉的发现史、作用机制、特点及该项技术的用途。RNA1的作用机制可以分为起始阶段和效应阶段。双链RNA被Dicer消化成siRNAs(small interfermg RNAs),进一步形成RNA诱导沉默复合物(RNA-mduced silencmg complex,or RISC),在siRNAs的引导下切割靶mRNA。RNAi技术在疾病的基因治疗、功能基因组学及细胞信号通路分析等力面具有广阔的应用前景。  相似文献   

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Role of histone H3 lysine 27 methylation in X inactivation   总被引:1,自引:0,他引:1  
The Polycomb group (PcG) protein Eed is implicated in regulation of imprinted X-chromosome inactivation in extraembryonic cells but not of random X inactivation in embryonic cells. The Drosophila homolog of the Eed-Ezh2 PcG protein complex achieves gene silencing through methylation of histone H3 on lysine 27 (H3-K27), which suggests a role for H3-K27 methylation in imprinted X inactivation. Here we demonstrate that transient recruitment of the Eed-Ezh2 complex to the inactive X chromosome (Xi) occurs during initiation of X inactivation in both extraembryonic and embryonic cells and is accompanied by H3-K27 methylation. Recruitment of the complex and methylation on the Xi depend on Xist RNA but are independent of its silencing function. Together, our results suggest a role for Eed-Ezh2-mediated H3-K27 methylation during initiation of both imprinted and random X inactivation and demonstrate that H3-K27 methylation is not sufficient for silencing of the Xi.  相似文献   

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Transient homologous chromosome pairing marks the onset of X inactivation   总被引:1,自引:0,他引:1  
Xu N  Tsai CL  Lee JT 《Science (New York, N.Y.)》2006,311(5764):1149-1152
Mammalian X inactivation turns off one female X chromosome to enact dosage compensation between XX and XY individuals. X inactivation is known to be regulated in cis by Xite, Tsix, and Xist, but in principle the two Xs must also be regulated in trans to ensure mutually exclusive silencing. Here, we demonstrate that interchromosomal pairing mediates this communication. Pairing occurs transiently at the onset of X inactivation and is specific to the X-inactivation center. Deleting Xite and Tsix perturbs pairing and counting/choice, whereas their autosomal insertion induces de novo X-autosome pairing. Ectopic X-autosome interactions inhibit endogenous X-X pairing and block the initiation of X-chromosome inactivation. Thus, Tsix and Xite function both in cis and in trans. We propose that Tsix and Xite regulate counting and mutually exclusive choice through X-X pairing.  相似文献   

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RNA干扰(RNAi)是指生物体内利用双链RNA(dsRNA)诱导同源靶基因的mRNA特异性降解,从而导致转录后基因沉默的现象。其在抵抗病毒感染、抑制转座子活动、调控内源性基因表达等方面发挥重要作用。RNAi以其高特异性、高效性等显著优势将成为研究基因功能的全新手段。简要概括RNAi作用机制和siRNA技术的原理,同时也讨论了RNAi技术在其他领域,如在基因信号通路研究、高通量研究基因功能、基因治疗如肿瘤研究和疾病治疗等方面的应用。  相似文献   

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A microRNA in a multiple-turnover RNAi enzyme complex   总被引:2,自引:0,他引:2  
In animals, the double-stranded RNA-specific endonuclease Dicer produces two classes of functionally distinct, tiny RNAs: microRNAs (miRNAs) and small interfering RNAs (siRNAs). miRNAs regulate mRNA translation, whereas siRNAs direct RNA destruction via the RNA interference (RNAi) pathway. Here we show that, in human cell extracts, the miRNA let-7 naturally enters the RNAi pathway, which suggests that only the degree of complementarity between a miRNA and its RNA target determines its function. Human let-7 is a component of a previously identified, miRNA-containing ribonucleoprotein particle, which we show is an RNAi enzyme complex. Each let-7-containing complex directs multiple rounds of RNA cleavage, which explains the remarkable efficiency of the RNAi pathway in human cells.  相似文献   

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RNA干扰(RNA interference, RNAi)是由双链RNA(double stranded RNA, dsRNA)分子介导的、在mRNA水平上关闭相应序列基因表达、使其沉默的过程。RNAi作为一种古老而保守的基因沉默机制,广泛存在于真核生物体内,在细胞的发育调控、抗病毒防御、修复遗传损伤、调节正常的基因等生命过程中起着重要的作用。RNAi机制可以分为3个阶段:启动阶段、效应阶段及扩增阶段。RNAi干扰相关的主要蛋白因子有Dicer酶、Argonaute(AGO) 蛋白家族和RNA依赖的RNA聚合酶(RNA\|dependent RNA polymerase, RdRP)。文章对RNAi机制及其相关主要蛋白因子进行简要综述。  相似文献   

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Liu Q  Rand TA  Kalidas S  Du F  Kim HE  Smith DP  Wang X 《Science (New York, N.Y.)》2003,301(5641):1921-1925
The RNA interference (RNAi) pathway is initiated by processing long double-stranded RNA into small interfering RNA (siRNA). The siRNA-generating enzyme was purified from Drosophila S2cells and consists of two stoichiometric subunits: Dicer-2(DCR-2) and a previously unknown protein that we named R2D2. R2D2 is homologous to the Caenorhabditis elegans RNAi protein RDE-4. Association with R2D2 does not affect the enzymatic activity of DCR-2. Rather, the DCR-2/R2D2 complex, but not DCR-2 alone, binds to siRNA and enhances sequence-specific messenger RNA degradation mediated by the RNA-initiated silencing complex (RISC). These results indicate that R2D2 bridges the initiation and effector steps of the Drosophila RNAi pathway by facilitating siRNA passage from Dicer to RISC.  相似文献   

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RNAi(RNA interference,RNA干扰)是一种高度保守的由小分子RNA介导的基因沉默过程。根据介导RNAi的小RNA长度以及结合Argonaute(AGO)蛋白家族成员的不同,将小RNA分为miRNA(microRNA)、siRNA(small interfering RNA)和piRNA(Piwi-interacting RNA)3类。根据近年来取得的研究进展,系统地阐述了这3类小RNA的基因组来源及其加工产生机制,归纳总结了这3类小RNA之间的区别和联系,并结合当前RNAi应用于疾病治疗存在的问题提出了自己的看法。RNAi机制的完善对于生物进化、生长发育及癌症等重大疑难疾病治疗具有重要的应用价值。  相似文献   

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RNAi技术及其应用   总被引:1,自引:0,他引:1  
RNAi主要通过双链RNA(dsRNA)被核酸酶切割成21~23 nt的干涉性小的RNA,即siRNA,由siRNA介导识别并靶向切割同源性靶mRNA分子而实现。目前RNAi技术在基因功能和基因治疗等方面的研究有了广泛的应用,RNAi技术有望成为后基因组时代基因功能分析的有力工具。  相似文献   

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RNA interference (RNAi) of target genes is triggered by double-stranded RNAs (dsRNAs) processed by conserved nucleases and accessory factors. To identify the genetic components required for RNAi, we performed a genome-wide screen using an engineered RNAi sensor strain of Caenorhabditis elegans. The RNAi screen identified 90 genes. These included Piwi/PAZ proteins, DEAH helicases, RNA binding/processing factors, chromatin-associated factors, DNA recombination proteins, nuclear import/export factors, and 11 known components of the RNAi machinery. We demonstrate that some of these genes are also required for germline and somatic transgene silencing. Moreover, the physical interactions among these potential RNAi factors suggest links to other RNA-dependent gene regulatory pathways.  相似文献   

18.
Increasingly complex networks of small RNAs act through RNA-interference (RNAi) pathways to regulate gene expression, to mediate antiviral responses, to organize chromosomal domains, and to restrain the spread of selfish genetic elements. Historically, RNAi has been defined as a response to double-stranded RNA. However, some small RNA species may not arise from double-stranded RNA precursors. Yet, like microRNAs and small interfering RNAs, such species guide Argonaute proteins to silencing targets through complementary base-pairing. Silencing can be achieved by corecruitment of accessory factors or through the activity of Argonaute itself, which often has endonucleolytic activity. As a specific and adaptive regulatory system, RNAi is used throughout eukarya, which indicates a long evolutionary history. A likely function of RNAi throughout that history is to protect the genome from both pathogenic and parasitic invaders.  相似文献   

19.
Argonaute2 is the catalytic engine of mammalian RNAi   总被引:4,自引:0,他引:4  
Gene silencing through RNA interference (RNAi) is carried out by RISC, the RNA-induced silencing complex. RISC contains two signature components, small interfering RNAs (siRNAs) and Argonaute family proteins. Here, we show that the multiple Argonaute proteins present in mammals are both biologically and biochemically distinct, with a single mammalian family member, Argonaute2, being responsible for messenger RNA cleavage activity. This protein is essential for mouse development, and cells lacking Argonaute2 are unable to mount an experimental response to siRNAs. Mutations within a cryptic ribonuclease H domain within Argonaute2, as identified by comparison with the structure of an archeal Argonaute protein, inactivate RISC. Thus, our evidence supports a model in which Argonaute contributes "Slicer" activity to RISC, providing the catalytic engine for RNAi.  相似文献   

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