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Sir3p蛋白N端的功能特性

Functional characterization of the N terminus of Sir3p.

作者信息

Gotta M, Palladino F, Gasser S M

机构信息

Swiss Institute for Experimental Cancer Research, CH-1066 Epalinges/Lausanne, Switzerland.

出版信息

Mol Cell Biol. 1998 Oct;18(10):6110-20. doi: 10.1128/MCB.18.10.6110.

DOI:10.1128/MCB.18.10.6110
PMID:9742128
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC109197/
Abstract

Silent information regulator 3 is an essential component of the Saccharomyces cerevisiae silencing complex that functions at telomeres and the silent mating-type loci, HMR and HML. We show that expression of the N- and C-terminal-encoding halves of SIR3 in trans partially complements the mating defect of the sir3 null allele, suggesting that the two domains have distinct functions. We present here a functional characterization of these domains. The N-terminal domain (Sir3N) increases both the frequency and extent of telomere-proximal silencing when expressed ectopically in SIR+ yeast strains, although we are unable to detect interaction between this domain and any known components of the silencing machinery. In contrast to its effect at telomeres, Sir3N overexpression derepresses transcription of reporter genes inserted in the ribosomal DNA (rDNA) array. Immunolocalization of Sir3N-GFP and Sir2p suggests that Sir3N directly antagonizes nucleolar Sir2p, releasing an rDNA-bound population of Sir2p so that it can enhance repression at telomeres. Overexpression of the C-terminal domain of either Sir3p or Sir4p has a dominant-negative effect on telomeric silencing. In strains overexpressing the C-terminal domain of Sir4p, elevated expression of either full-length Sir3p or Sir3N restores repression and the punctate pattern of Sir3p and Rap1p immunostaining. The similarity of Sir3N and Sir3p overexpression phenotypes suggests that Sir3N acts as an allosteric effector of Sir3p, either enhancing its interactions with other silencing components or liberating the full-length protein from nonfunctional complexes.

摘要

沉默信息调节因子3是酿酒酵母沉默复合体的一个重要组成部分,该复合体在端粒以及沉默交配型位点HMR和HML发挥作用。我们发现,反式表达SIR3编码N端和C端的片段可部分弥补sir3缺失等位基因的交配缺陷,这表明这两个结构域具有不同的功能。我们在此对这些结构域进行功能特性分析。当在SIR⁺酵母菌株中异位表达时,N端结构域(Sir3N)可增加端粒近端沉默的频率和程度,尽管我们无法检测到该结构域与沉默机制的任何已知组分之间的相互作用。与它在端粒上的作用相反,Sir3N的过表达会解除插入核糖体DNA(rDNA)阵列中的报告基因的转录抑制。Sir3N - GFP和Sir2p的免疫定位表明,Sir3N直接拮抗核仁中的Sir2p,释放与rDNA结合的Sir2p群体,使其能够增强端粒处的抑制作用。Sir3p或Sir4p的C端结构域的过表达对端粒沉默具有显性负效应。在过表达Sir4p C端结构域的菌株中,全长Sir3p或Sir3N的表达升高可恢复抑制作用以及Sir3p和Rap1p免疫染色的点状模式。Sir3N和Sir3p过表达表型的相似性表明,Sir3N作为Sir3p的变构效应器,要么增强其与其他沉默组分的相互作用,要么将全长蛋白从无功能的复合物中释放出来。

相似文献

1
Functional characterization of the N terminus of Sir3p.Sir3p蛋白N端的功能特性
Mol Cell Biol. 1998 Oct;18(10):6110-20. doi: 10.1128/MCB.18.10.6110.
2
Analysis of Sir2p domains required for rDNA and telomeric silencing in Saccharomyces cerevisiae.酿酒酵母中rDNA和端粒沉默所需的Sir2p结构域分析。
Genetics. 2000 Mar;154(3):1069-83. doi: 10.1093/genetics/154.3.1069.
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Multiple interactions in Sir protein recruitment by Rap1p at silencers and telomeres in yeast.酵母中Rap1p在沉默子和端粒处招募Sir蛋白的多种相互作用。
Mol Cell Biol. 2001 Dec;21(23):8082-94. doi: 10.1128/MCB.21.23.8082-8094.2001.
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Locus specificity determinants in the multifunctional yeast silencing protein Sir2.多功能酵母沉默蛋白Sir2中的基因座特异性决定因素
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Genetic analysis of Rap1p/Sir3p interactions in telomeric and HML silencing in Saccharomyces cerevisiae.酿酒酵母中端粒和HML沉默中Rap1p/Sir3p相互作用的遗传分析。
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6
Hyperactivation of the silencing proteins, Sir2p and Sir3p, causes chromosome loss.沉默蛋白Sir2p和Sir3p的过度激活会导致染色体丢失。
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Nuclear organization and silencing: trafficking of Sir proteins.核组织与基因沉默:Sir蛋白的运输
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8
Silencing of genes at nontelomeric sites in yeast is controlled by sequestration of silencing factors at telomeres by Rap 1 protein.酵母中非端粒位点基因的沉默是由Rap 1蛋白将沉默因子隔离在端粒处来控制的。
Genes Dev. 1996 Jun 1;10(11):1297-309. doi: 10.1101/gad.10.11.1297.
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The ZDS1 and ZDS2 proteins require the Sir3p component of yeast silent chromatin to enhance the stability of short linear centromeric plasmids.ZDS1和ZDS2蛋白需要酵母沉默染色质的Sir3p组分来增强短线性着丝粒质粒的稳定性。
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Sif2p interacts with Sir4p amino-terminal domain and antagonizes telomeric silencing in yeast.Sif2p与Sir4p氨基末端结构域相互作用,并拮抗酵母中的端粒沉默。
Curr Biol. 1998 Jun 18;8(13):787-90. doi: 10.1016/s0960-9822(98)70304-5.

引用本文的文献

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The Sir4 H-BRCT domain interacts with phospho-proteins to sequester and repress yeast heterochromatin.Sir4 H-BRCT 结构域与磷酸化蛋白相互作用,以隔离和抑制酵母异染色质。
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Smc5/6 Is a Telomere-Associated Complex that Regulates Sir4 Binding and TPE.Smc5/6是一种与端粒相关的复合体,可调节Sir4结合和端粒位置效应。
PLoS Genet. 2016 Aug 26;12(8):e1006268. doi: 10.1371/journal.pgen.1006268. eCollection 2016 Aug.
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The Nuts and Bolts of Transcriptionally Silent Chromatin in Saccharomyces cerevisiae.酿酒酵母中转录沉默染色质的基本要素
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Nα-acetylated Sir3 stabilizes the conformation of a nucleosome-binding loop in the BAH domain.Nα-乙酰化 Sir3 稳定 BAH 结构域中核小体结合环的构象。
Nat Struct Mol Biol. 2013 Sep;20(9):1116-8. doi: 10.1038/nsmb.2637. Epub 2013 Aug 11.
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Dimerization of Sir3 via its C-terminal winged helix domain is essential for yeast heterochromatin formation.通过其 C 端翼状螺旋结构域的二聚化对于酵母异染色质的形成是必需的。
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Regulating repression: roles for the sir4 N-terminus in linker DNA protection and stabilization of epigenetic states.调控抑制:Sir4 N 端在连接体 DNA 保护和稳定表观遗传状态中的作用。
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Clustering heterochromatin: Sir3 promotes telomere clustering independently of silencing in yeast.凝聚异染色质:Sir3 蛋白在酵母中独立于沉默促进端粒的凝聚。
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The functional importance of telomere clustering: global changes in gene expression result from SIR factor dispersion.端粒聚集的功能重要性:基因表达的全局变化源于SIR因子的分散。
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本文引用的文献

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Silent information regulator protein complexes in Saccharomyces cerevisiae: a SIR2/SIR4 complex and evidence for a regulatory domain in SIR4 that inhibits its interaction with SIR3.酿酒酵母中的沉默信息调节蛋白复合物:一种SIR2/SIR4复合物以及SIR4中存在抑制其与SIR3相互作用的调节结构域的证据。
Proc Natl Acad Sci U S A. 1997 Mar 18;94(6):2186-91. doi: 10.1073/pnas.94.6.2186.
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Genes Dev. 1997 Jan 15;11(2):255-69. doi: 10.1101/gad.11.2.255.
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An unusual form of transcriptional silencing in yeast ribosomal DNA.酵母核糖体DNA中一种不寻常的转录沉默形式。
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