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多层次的染色质结构调控:建立裂殖酵母基因转录的紧密和特异性反应。

Multi-Layered Regulations on the Chromatin Architectures: Establishing the Tight and Specific Responses of Fission Yeast Gene Transcription.

机构信息

Department of Viticulture and Enology, University of California, Davis, CA 95616, USA.

Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University, Hachioji 192-0397, Tokyo, Japan.

出版信息

Biomolecules. 2022 Nov 5;12(11):1642. doi: 10.3390/biom12111642.

Abstract

Transcriptional regulation is pivotal for all living organisms and is required for adequate response to environmental fluctuations and intercellular signaling molecules. For precise regulation of transcription, cells have evolved regulatory systems on the genome architecture, including the chromosome higher-order structure (e.g., chromatin loops), location of transcription factor (TF)-binding sequences, non-coding RNA (ncRNA) transcription, chromatin configuration (e.g., nucleosome positioning and histone modifications), and the topological state of the DNA double helix. To understand how these genome-chromatin architectures and their regulators establish tight and specific responses at the transcription stage, the fission yeast gene has been analyzed as a model system for decades. The fission yeast gene is tightly repressed in the presence of glucose, and this gene is induced by over three orders of magnitude upon glucose starvation with a cascade of multi-layered regulations on various levels of genome and chromatin architecture. In this review article, we summarize the multi-layered transcriptional regulatory systems revealed by the analysis of the fission yeast gene as a model system.

摘要

转录调控对于所有生物都是至关重要的,对于环境波动和细胞间信号分子的充分响应是必需的。为了精确调控转录,细胞在基因组结构上进化出了调控系统,包括染色体高级结构(例如染色质环)、转录因子(TF)结合序列的位置、非编码 RNA(ncRNA)转录、染色质构象(例如核小体定位和组蛋白修饰)以及 DNA 双螺旋的拓扑状态。为了了解这些基因组-染色质结构及其调控因子如何在转录阶段建立紧密和特异性的反应,裂殖酵母基因已被分析了几十年,作为一个模型系统。在存在葡萄糖的情况下,裂殖酵母基因被严密抑制,而当葡萄糖饥饿时,该基因被诱导超过三个数量级,在基因组和染色质结构的各个层次上进行多层次的级联调控。在这篇综述文章中,我们总结了裂殖酵母基因作为模型系统揭示的多层次转录调控系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bf2/9687179/522f5ebf9558/biomolecules-12-01642-g001.jpg

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