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Hog1通过RNA聚合酶II重新分布和染色质重塑绕过应激介导的转录下调。

Hog1 bypasses stress-mediated down-regulation of transcription by RNA polymerase II redistribution and chromatin remodeling.

作者信息

Nadal-Ribelles Mariona, Conde Núria, Flores Oscar, González-Vallinas Juan, Eyras Eduardo, Orozco Modesto, de Nadal Eulàlia, Posas Francesc

出版信息

Genome Biol. 2012 Nov 18;13(11):R106. doi: 10.1186/gb-2012-13-11-r106.

Abstract

BACKGROUND

Cells are subjected to dramatic changes of gene expression upon environmental changes. Stress causes a general down-regulation of gene expression together with the induction of a set of stress-responsive genes. The p38-related stress-activated protein kinase Hog1 is an important regulator of transcription upon osmostress in yeast.

RESULTS

Genome-wide localization studies of RNA polymerase II (RNA Pol II) and Hog1 showed that stress induced major changes in RNA Pol II localization, with a shift toward stress-responsive genes relative to housekeeping genes. RNA Pol II relocalization required Hog1, which was also localized to stress-responsive loci. In addition to RNA Pol II-bound genes, Hog1 also localized to RNA polymerase III-bound genes, pointing to a wider role for Hog1 in transcriptional control than initially expected. Interestingly, an increasing association of Hog1 with stress-responsive genes was strongly correlated with chromatin remodeling and increased gene expression. Remarkably, MNase-Seq analysis showed that although chromatin structure was not significantly altered at a genome-wide level in response to stress, there was pronounced chromatin remodeling for those genes that displayed Hog1 association.

CONCLUSION

Hog1 serves to bypass the general down-regulation of gene expression that occurs in response to osmostress, and does so both by targeting RNA Pol II machinery and by inducing chromatin remodeling at stress-responsive loci.

摘要

背景

细胞在环境变化时会经历基因表达的显著变化。应激会导致基因表达普遍下调,同时诱导一组应激反应基因。与p38相关的应激激活蛋白激酶Hog1是酵母中渗透压应激时转录的重要调节因子。

结果

对RNA聚合酶II(RNA Pol II)和Hog1进行全基因组定位研究表明,应激诱导了RNA Pol II定位的主要变化,相对于管家基因,其向应激反应基因转移。RNA Pol II重新定位需要Hog1,Hog1也定位于应激反应位点。除了与RNA Pol II结合的基因外,Hog1还定位于与RNA聚合酶III结合的基因,这表明Hog1在转录控制中的作用比最初预期的更广泛。有趣的是,Hog1与应激反应基因的关联增加与染色质重塑和基因表达增加密切相关。值得注意的是,MNase-Seq分析表明,尽管在全基因组水平上染色质结构在应激反应中没有显著改变,但那些与Hog1相关的基因存在明显的染色质重塑。

结论

Hog1有助于绕过因渗透压应激而发生的基因表达普遍下调,其通过靶向RNA Pol II机制以及在应激反应位点诱导染色质重塑来实现这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f011/3580498/5df2eda7b5c8/gb-2012-13-11-r106-1.jpg

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