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抑制广泛的反义转录是裂殖酵母 RNA 聚合酶 II CTD 丝氨酸 2 磷酸化的主要作用。

Repression of pervasive antisense transcription is the primary role of fission yeast RNA polymerase II CTD serine 2 phosphorylation.

机构信息

RNA Group, Dept of Biochemistry & Functional Genomics, Université de Sherbrooke, Sherbrooke, Québec J1E 4K8, Canada.

URPHYM-GEMO, The University of Namur, rue de Bruxelles, 61, Namur 5000, Belgium.

出版信息

Nucleic Acids Res. 2024 Jul 22;52(13):7572-7589. doi: 10.1093/nar/gkae436.

Abstract

The RNA polymerase II carboxy-terminal domain (CTD) consists of conserved heptapeptide repeats that can be phosphorylated to influence distinct stages of the transcription cycle, including RNA processing. Although CTD-associated proteins have been identified, phospho-dependent CTD interactions have remained elusive. Proximity-dependent biotinylation (PDB) has recently emerged as an alternative approach to identify protein-protein associations in the native cellular environment. In this study, we present a PDB-based map of the fission yeast RNAPII CTD interactome in living cells and identify phospho-dependent CTD interactions by using a mutant in which Ser2 was replaced by alanine in every repeat of the fission yeast CTD. This approach revealed that CTD Ser2 phosphorylation is critical for the association between RNAPII and the histone methyltransferase Set2 during transcription elongation, but is not required for 3' end processing and transcription termination. Accordingly, loss of CTD Ser2 phosphorylation causes a global increase in antisense transcription, correlating with elevated histone acetylation in gene bodies. Our findings reveal that the fundamental role of CTD Ser2 phosphorylation is to establish a chromatin-based repressive state that prevents cryptic intragenic transcription initiation.

摘要

RNA 聚合酶 II 羧基末端结构域 (CTD) 由保守的七肽重复序列组成,这些序列可以被磷酸化,从而影响转录周期的不同阶段,包括 RNA 加工。尽管已经鉴定出与 CTD 相关的蛋白质,但磷酸化依赖性 CTD 相互作用仍然难以捉摸。最近,邻近依赖性生物素化 (PDB) 已成为在天然细胞环境中鉴定蛋白质-蛋白质相互作用的一种替代方法。在这项研究中,我们在活细胞中展示了裂殖酵母 RNAPII CTD 相互作用组的基于 PDB 的图谱,并通过使用 Ser2 在裂殖酵母 CTD 的每个重复中被丙氨酸取代的突变体来鉴定磷酸化依赖性 CTD 相互作用。这种方法表明,CTD Ser2 磷酸化对于转录延伸过程中 RNAPII 和组蛋白甲基转移酶 Set2 之间的关联至关重要,但对于 3' 端加工和转录终止不是必需的。因此,CTD Ser2 磷酸化的丧失会导致反义转录的全局增加,与基因体中组蛋白乙酰化的升高相关。我们的发现表明,CTD Ser2 磷酸化的基本作用是建立一种基于染色质的抑制状态,防止隐蔽的基因内转录起始。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/718c/11260464/1fc2106e1d8b/gkae436figgra1.jpg

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