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首页> 外文期刊>Environmental microbiology >The Neurospora RNA polymerase II kinase CTK negatively regulates catalase expression in a chromatin context-dependent manner
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The Neurospora RNA polymerase II kinase CTK negatively regulates catalase expression in a chromatin context-dependent manner

机译:神经孢子菌RNA聚合酶II激酶CTK在染色体上下依赖性的方式中对染色质调节过氧化氢酶表达

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摘要

Clearance and adaptation to reactive oxygen species (ROS) are crucial for cell survival. As in other eukaryotes, the Neurospora catalases are the main enzymes responsible for ROS clearance and their expression are tightly regulated by the growth and environmental conditions. The RNA polymerase II carboxyl terminal domain (RNAPII CTD) kinase complex (CTK complex) is known as a positive elongation factor for many inducible genes by releasing paused RNAPII near the transcription start site and promoting transcription elongation. However, here we show that deletion of CTK complex components in Neurospora led to high CAT-3 expression level and resistance to H2O2-induced ROS stress. The catalytic activity of CTK-1 is required for such a response. On the other hand, CTK-1 overexpression led to decreased expression of CAT-3. ChIP assays shows that CTK-1 phosphorylates the RNAPII CTD at Ser2 residues in the cat-3 ORF region during transcription elongation and deletion of CTK-1 led to dramatic decreases of SET-2 recruitment and H3K36me3 modification. As a result, histones at the cat-3 locus become hyperacetylated to promote its transcription. Together, these results demonstrate that the CTK complex is negative regulator of cat-3 expression by affecting its chromatin structure.
机译:对反应性氧(ROS)的间隙和适应对细胞存活至关重要。与其他真核生物一样,神经孢子孢子酸酶是负责ROS间隙的主要酶,它们的表达受到生长和环境条件的紧密调节。 RNA聚合酶II羧基末端结构域(RNAPII CTD)激酶复合物(CTK复合物)被称为许多诱导基因的正伸长因子,通过释放转录开始位点附近并促进转录伸长率。然而,在这里,我们表明,缺失神经孢子菌中的CTK复合体组分导致高CAT-3表达水平和对H2O2诱导的ROS应力的抗性。对于这种反应需要CTK-1的催化活性。另一方面,CTK-1过表达导致CAT-3的表达降低。芯片测定表明,CTK-1在转录伸长率和CTK-1的缺失期间将CTK-3在CAT-3 ORF区域中的RNAPII CTD磷酸化磷脂CTD导致SET-2募集和H3K36ME3改性的显着降低。结果,Cat-3基因座的组蛋白变得过乙酰化以促进其转录。这些结果一起表明CTK复合物通过影响其染色质结构是CAT-3表达的负调节剂。

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  • 来源
    《Environmental microbiology 》 |2020年第1期| 共15页
  • 作者单位

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

    Univ Texas Southwestern Med Ctr Dallas Dept Physiol Dallas TX 75390 USA;

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

    Chinese Acad Sci Inst Microbiol State Key Lab Mycol Beijing 100101 Peoples R China;

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

    Univ Texas Southwestern Med Ctr Dallas Dept Physiol Dallas TX 75390 USA;

    China Agr Univ Coll Biol Sci State Key Lab Agrobiotechnol Beijing 100193 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学 ;
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