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Rpd3- 和 spt16 介导的核小体组装和转录调控在酵母核糖体 DNA 基因上。

Rpd3- and spt16-mediated nucleosome assembly and transcriptional regulation on yeast ribosomal DNA genes.

机构信息

Department of Biochemistry and Molecular Genetics, University of Virginia, School of Medicine, Charlottesville, Virginia, USA.

出版信息

Mol Cell Biol. 2013 Jul;33(14):2748-59. doi: 10.1128/MCB.00112-13. Epub 2013 May 20.

DOI:10.1128/MCB.00112-13
PMID:23689130
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3700123/
Abstract

Ribosomal DNA (rDNA) genes in eukaryotes are organized into multicopy tandem arrays and transcribed by RNA polymerase I. During cell proliferation, ∼50% of these genes are active and have a relatively open chromatin structure characterized by elevated accessibility to psoralen cross-linking. In Saccharomyces cerevisiae, transcription of rDNA genes becomes repressed and chromatin structure closes when cells enter the diauxic shift and growth dramatically slows. In this study, we found that nucleosomes are massively depleted from the active rDNA genes during log phase and reassembled during the diauxic shift, largely accounting for the differences in psoralen accessibility between active and inactive genes. The Rpd3L histone deacetylase complex was required for diauxic shift-induced H4 and H2B deposition onto rDNA genes, suggesting involvement in assembly or stabilization of the entire nucleosome. The Spt16 subunit of FACT, however, was specifically required for H2B deposition, suggesting specificity for the H2A/H2B dimer. Miller chromatin spreads were used for electron microscopic visualization of rDNA genes in an spt16 mutant, which was found to be deficient in the assembly of normal nucleosomes on inactive genes and the disruption of nucleosomes on active genes, consistent with an inability to fully reactivate polymerase I (Pol I) transcription when cells exit stationary phase.

摘要

真核生物的核糖体 DNA(rDNA) 基因组织成多拷贝串联阵列,并由 RNA 聚合酶 I 转录。在细胞增殖过程中,这些基因约有 50%处于活跃状态,具有相对开放的染色质结构,特征是对补骨脂素交联的可及性增加。在酿酒酵母中,当细胞进入兼性营养型和生长显著减慢时,rDNA 基因的转录被抑制,染色质结构关闭。在这项研究中,我们发现活跃的 rDNA 基因在对数生长期大量缺乏核小体,并在兼性营养型转换期间重新组装,这在很大程度上解释了活跃和不活跃基因之间补骨脂素可及性的差异。Rpd3L 组蛋白去乙酰化酶复合物是兼性营养型转换诱导 rDNA 基因上 H4 和 H2B 沉积所必需的,这表明其参与整个核小体的组装或稳定。然而,FACT 的 Spt16 亚基特异性地需要 H2B 沉积,这表明其特异性针对 H2A/H2B 二聚体。使用 Miller 染色质展开进行 spt16 突变体中 rDNA 基因的电子显微镜可视化,发现其在不活跃基因上正常核小体的组装以及活跃基因上核小体的破坏方面存在缺陷,这与细胞退出静止期时无法完全重新激活聚合酶 I (Pol I) 转录一致。

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本文引用的文献

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The chromatin remodeling complex NuRD establishes the poised state of rRNA genes characterized by bivalent histone modifications and altered nucleosome positions.染色质重塑复合物 NuRD 建立了 rRNA 基因的 poised 状态,其特征是双价组蛋白修饰和改变的核小体位置。
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DSIF and RNA polymerase II CTD phosphorylation coordinate the recruitment of Rpd3S to actively transcribed genes.DSIF 和 RNA 聚合酶 II CTD 磷酸化协调 Rpd3S 募集到活跃转录的基因。
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Rpd3-dependent boundary formation at telomeres by removal of Sir2 substrate.Rpd3 依赖性的端粒边界形成通过去除 Sir2 底物。
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Mol Cell. 2009 Aug 14;35(3):377-83. doi: 10.1016/j.molcel.2009.07.001.
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Mol Cell. 2009 Aug 14;35(3):365-76. doi: 10.1016/j.molcel.2009.06.024.
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Histone deacetylase Rpd3 antagonizes Sir2-dependent silent chromatin propagation.组蛋白去乙酰化酶Rpd3拮抗Sir2依赖的沉默染色质传播。
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