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TFIIS在热应激响应转录重编程的早期转录延伸过程中至关重要。

TFIIS Is Crucial During Early Transcript Elongation for Transcriptional Reprogramming in Response to Heat Stress.

作者信息

Obermeyer Simon, Stöckl Richard, Schnekenburger Tobias, Kapoor Henna, Stempfl Thomas, Schwartz Uwe, Grasser Klaus D

机构信息

Cell Biology & Plant Biochemistry, Biochemistry Centre, University of Regensburg, Universitätsstr. 31, D-93053 Regensburg, Germany.

Center of Excellence for Fluorescent Bioanalytics (KFB), University of Regensburg, Am Biopark 9, D-93053 Regensburg, Germany.

出版信息

J Mol Biol. 2023 Jan 30;435(2):167917. doi: 10.1016/j.jmb.2022.167917. Epub 2022 Dec 9.

Abstract

In addition to the stage of transcriptional initiation, the production of mRNAs is regulated during elongation. Accordingly, the synthesis of mRNAs by RNA polymerase II (RNAPII) in the chromatin context is modulated by various transcript elongation factors. TFIIS is an elongation factor that stimulates the transcript cleavage activity of RNAPII to reactivate stalled elongation complexes at barriers to transcription including nucleosomes. Since Arabidopsis tfIIs mutants grow normally under standard conditions, we have exposed them to heat stress (HS), revealing that tfIIs plants are highly sensitive to elevated temperatures. Transcriptomic analyses demonstrate that particularly HS-induced genes are expressed at lower levels in tfIIs than in wildtype. Mapping the distribution of elongating RNAPII uncovered that in tfIIs plants RNAPII accumulates at the +1 nucleosome of genes that are upregulated upon HS. The promoter-proximal RNAPII accumulation in tfIIs under HS conditions conforms to that observed upon inhibition of the RNAPII transcript cleavage activity. Further analysis of the RNAPII accumulation downstream of transcriptional start sites illustrated that RNAPII stalling occurs at +1 nucleosomes that are depleted in the histone variant H2A.Z upon HS. Therefore, assistance of early transcript elongation by TFIIS is required for reprogramming gene expression to establish plant thermotolerance.

摘要

除了转录起始阶段外,mRNA的产生在延伸过程中也受到调控。因此,染色质环境中RNA聚合酶II(RNAPII)对mRNA的合成受到多种转录延伸因子的调节。TFIIS是一种延伸因子,它刺激RNAPII的转录切割活性,以重新激活在包括核小体在内的转录障碍处停滞的延伸复合物。由于拟南芥tfIIs突变体在标准条件下正常生长,我们将它们暴露于热胁迫(HS)下,发现tfIIs植物对高温高度敏感。转录组分析表明,特别是热胁迫诱导的基因在tfIIs中的表达水平低于野生型。绘制延伸中的RNAPII的分布图发现,在tfIIs植物中,RNAPII在热胁迫下上调的基因的+1核小体处积累。热胁迫条件下tfIIs中启动子近端的RNAPII积累与抑制RNAPII转录切割活性时观察到的情况一致。对转录起始位点下游的RNAPII积累的进一步分析表明,RNAPII停滞发生在热胁迫下组蛋白变体H2A.Z缺失的+1核小体处。因此,TFIIS对早期转录延伸的协助是重编程基因表达以建立植物耐热性所必需的。

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