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RNA 聚合酶 III 调控中染色质的构象变化。

The choreography of chromatin in RNA polymerase III regulation.

机构信息

Division of Gene Regulation, Netherlands Cancer Institute, Amsterdam 1066 CX, The Netherlands.

Department of Neurosurgery, Amsterdam UMC Location Vrije Universiteit Amsterdam, Amsterdam 1081HV, The Netherlands.

出版信息

Biochem Soc Trans. 2024 Jun 26;52(3):1173-1189. doi: 10.1042/BST20230770.

Abstract

Regulation of eukaryotic gene expression involves a dynamic interplay between the core transcriptional machinery, transcription factors, and chromatin organization and modification. While this applies to transcription by all RNA polymerase complexes, RNA polymerase III (RNAPIII) seems to be atypical with respect to its mechanisms of regulation. One distinctive feature of most RNAPIII transcribed genes is that they are devoid of nucleosomes, which relates to the high levels of transcription. Moreover, most of the regulatory sequences are not outside but within the transcribed open chromatin regions. Yet, several lines of evidence suggest that chromatin factors affect RNAPIII dynamics and activity and that gene sequence alone does not explain the observed regulation of RNAPIII. Here we discuss the role of chromatin modification and organization of RNAPIII transcribed genes and how they interact with the core transcriptional RNAPIII machinery and regulatory DNA elements in and around the transcribed genes.

摘要

真核基因表达的调控涉及核心转录机器、转录因子以及染色质的组织和修饰之间的动态相互作用。虽然这适用于所有 RNA 聚合酶复合物的转录,但 RNA 聚合酶 III(RNAPIII)在其调控机制方面似乎是不同寻常的。大多数由 RNAPIII 转录的基因的一个显著特征是它们不含核小体,这与转录的高水平有关。此外,大多数调节序列不在转录的开放染色质区域之外,而在其内部。然而,有几条证据表明染色质因子影响 RNAPIII 的动力学和活性,并且基因序列本身并不能解释观察到的 RNAPIII 调控。在这里,我们讨论了染色质修饰和 RNAPIII 转录基因的组织在转录基因内和周围与核心转录 RNAPIII 机器和调节 DNA 元件相互作用的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d734/11346459/b74b6029d60e/BST-52-1173-g0001.jpg

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