首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >U7 small nuclear ribonucleoprotein represses histone gene transcription in cell cycle-arrested cells
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U7 small nuclear ribonucleoprotein represses histone gene transcription in cell cycle-arrested cells

机译:U7小核糖核蛋白抑制细胞周期阻滞细胞中的组蛋白基因转录

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摘要

Histone gene expression is tightly coordinated with DNA replication, as it is activated at the onset of S phase and suppressed at the end of S phase. Replication-dependent histone gene expression is precisely controlled at both transcriptional and posttranscriptional levels. U7 small nuclear ribonucleoprotein (U7 snRNP) is involved in the 3-end processing of nonpolyadenylated histone mRNAs, which is required for S phase-specific gene expression. The present study reports a unique function of U7 snRNP in the repression of histone gene transcription under cell cycle-arrested conditions. Elimination of U7 snRNA with an antisense oligonucleotide in HeLa cells as well as in nontransformed human lung fibroblasts resulted in elevated levels of replication-dependent H1, H2A, H2B, H3. and H4 histone mRNAs but not of replication-independent H3F3B histone mRNA. An analogous effect was observed upon depletion of Lsm10, a component of the U7 snRNP-specif ic Sm ring, with siRNA. Pulse-chase experiments revealed that U7 snRNP acts to repress transcription without remarkably altering mRNA stability. Mass spectrometric analysis of the captured U7 snRNP from HeLa cell extracts identified heterogeneous nuclear (hn)RNP UL1 as a U7 snRNP interaction partner. Further knockdown and overexpression experiments revealed that hnRNP UL1 is responsible for U7 snRNP-dependent transcriptional repression of replication-dependent histone genes. Chromatin immunoprecipitation confirmed that hnRNP UL1 is recruited to the histone gene locus only when U7 snRNP is present. These findings support a unique mechanism of snRNP-mediated transcriptional control that restricts histone synthesis to S phase, thereby preventing the potentially toxic effects of histone synthesis at other times in the cell cycle.
机译:组蛋白基因表达与DNA复制密切相关,因为它在S期开始时就被激活,在S期结束时被抑制。复制依赖的组蛋白基因表达在转录和转录后水平上都受到精确控制。 U7小核糖核蛋白(U7 snRNP)参与非聚腺苷酸组蛋白mRNA的3末端加工,这是S期特异性基因表达所必需的。本研究报告了U7 snRNP在阻滞细胞周期条件下抑制组蛋白基因转录的独特功能。在HeLa细胞以及未转化的人肺成纤维细胞中用反义寡核苷酸消除U7 snRNA导致复制依赖性H1,H2A,H2B,H3水平升高。和H4组蛋白mRNA,但不依赖复制的H3F3B组蛋白mRNA。用siRNA消耗U7 snRNP特异性Sm环Lsm10后,观察到类似的效果。脉冲追踪实验表明,U7 snRNP可以抑制转录,而不会显着改变mRNA的稳定性。从HeLa细胞提取物中捕获的U7 snRNP的质谱分析确定异质核(​​hn)RNP UL1为U7 snRNP相互作用的伙伴。进一步的敲低和过表达实验表明,hnRNP UL1负责复制依赖性组蛋白基因的U7 snRNP依赖性转录抑制。染色质免疫沉淀证实仅当存在U7 snRNP时,hnRNP UL1才募集到组蛋白基因位点。这些发现支持了snRNP介导的转录控制的独特机制,该机制将组蛋白合成限制在S期,从而防止了在细胞周期其他时间组蛋白合成的潜在毒性作用。

著录项

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  • 作者单位

    Functional RNomics Team and Biomedicinal Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Koutou, Tokyo 135-0064, Japan;

    Biological Systems Control Team, Biomedicinal Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Koutou, Tokyo 135-0064, Japan;

    Functional RNomics Team and Biomedicinal Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Koutou, Tokyo 135-0064, Japan;

    Functional RNomics Team and Biomedicinal Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Koutou, Tokyo 135-0064, Japan;

    Biological Systems Control Team, Biomedicinal Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Koutou, Tokyo 135-0064, Japan;

    Functional RNomics Team and Biomedicinal Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Koutou, Tokyo 135-0064, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    RNA regulator; RNA-binding protein; RNP pulldown;

    机译:RNA调节剂;RNA结合蛋白;RNP下拉;
  • 入库时间 2022-08-18 00:40:21

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