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核糖体组装基因网络受转录延伸的反馈调节控制。

The ribosome assembly gene network is controlled by the feedback regulation of transcription elongation.

作者信息

Gómez-Herreros Fernando, Margaritis Thanasis, Rodríguez-Galán Olga, Pelechano Vicent, Begley Victoria, Millán-Zambrano Gonzalo, Morillo-Huesca Macarena, Muñoz-Centeno Mari Cruz, Pérez-Ortín José E, de la Cruz Jesús, Holstege Frank C P, Chávez Sebastián

机构信息

Instituto de Biomedicina de Sevilla (IBiS), Hospital Virgen del Rocío-CSIC-Universidad de Sevilla, and Departamento de Genética, Universidad de Sevilla, 41013 Seville, Spain.

Molecular Cancer Research, University Medical Center Utrecht, & Princess Máxima Center for Pediatric Oncology, Utrecht, The Netherlands.

出版信息

Nucleic Acids Res. 2017 Sep 19;45(16):9302-9318. doi: 10.1093/nar/gkx529.

Abstract

Ribosome assembly requires the concerted expression of hundreds of genes, which are transcribed by all three nuclear RNA polymerases. Transcription elongation involves dynamic interactions between RNA polymerases and chromatin. We performed a synthetic lethal screening in Saccharomyces cerevisiae with a conditional allele of SPT6, which encodes one of the factors that facilitates this process. Some of these synthetic mutants corresponded to factors that facilitate pre-rRNA processing and ribosome biogenesis. We found that the in vivo depletion of one of these factors, Arb1, activated transcription elongation in the set of genes involved directly in ribosome assembly. Under these depletion conditions, Spt6 was physically targeted to the up-regulated genes, where it helped maintain their chromatin integrity and the synthesis of properly stable mRNAs. The mRNA profiles of a large set of ribosome biogenesis mutants confirmed the existence of a feedback regulatory network among ribosome assembly genes. The transcriptional response in this network depended on both the specific malfunction and the role of the regulated gene. In accordance with our screening, Spt6 positively contributed to the optimal operation of this global network. On the whole, this work uncovers a feedback control of ribosome biogenesis by fine-tuning transcription elongation in ribosome assembly factor-coding genes.

摘要

核糖体组装需要数百个基因的协同表达,这些基因由所有三种核RNA聚合酶转录。转录延伸涉及RNA聚合酶与染色质之间的动态相互作用。我们用SPT6的条件等位基因在酿酒酵母中进行了合成致死筛选,SPT6编码促进这一过程的因子之一。其中一些合成突变体对应于促进前体rRNA加工和核糖体生物发生的因子。我们发现,这些因子之一Arb1在体内的缺失激活了直接参与核糖体组装的一组基因中的转录延伸。在这些缺失条件下,Spt6被物理靶向到上调的基因,在那里它有助于维持其染色质完整性和正确稳定的mRNA的合成。大量核糖体生物发生突变体的mRNA谱证实了核糖体组装基因之间存在反馈调节网络。该网络中的转录反应取决于特定的功能障碍和受调控基因的作用。与我们的筛选结果一致,Spt6对这个全局网络的最佳运行有积极贡献。总体而言,这项工作通过微调核糖体组装因子编码基因中的转录延伸,揭示了核糖体生物发生的反馈控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80a7/5737610/266fe30cb641/gkx529fig1.jpg

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