真菌SWI/SNF和RSC染色质重塑复合物的结构和功能特征及其调控机制。

IF 4.4 2区 生物学 Q1 MYCOLOGY
Mycology Pub Date : 2025-01-06 eCollection Date: 2025-01-01 DOI:10.1080/21501203.2024.2425170
Lirong Zhu, Qianqian Liu, Chao Zhao, Meichen Zhu, Xuewei Yang, Jinkui Yang
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引用次数: 0

摘要

染色质重塑者利用ATP水解产生的能量来重塑核小体和调节组蛋白,这对真核生物基因表达和染色质结构至关重要。在真核生物中,SWI/SNF(开关缺陷/蔗糖非发酵)类atp依赖性染色质修饰剂包括两个复合物,SWI/SNF和RSC(重塑染色质结构)。在过去的10年里,SWI/SNF和RSC染色质重塑剂已成为包括动物、植物和真菌在内的各种生物的研究热点。在真菌中,这两种复合物具有多种功能,包括调控菌丝分化、产孢、应激反应和致病性等。除了描述保守的结构特性和作用机制外,我们还强调了真菌进化中序列和功能分化的证据。本综述为进一步比较分析SWI/SNF和RSC复合物在不同真菌中的作用和调控机制提供了基础,为今后在病原菌控制方面的潜在应用奠定了良好的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and functional characterisation and regulatory mechanisms of SWI/SNF and RSC chromatin remodelling complexes in fungi.

Chromatin remodellers utilise energy generated from ATP hydrolysis to remodel nucleosomes and modulate histones, which are crucial for eukaryotic gene expression and chromatin architecture. The SWI/SNF (switching defective/sucrose non-fermenting) class of ATP-dependent chromatin modifiers in eukaryotes includes two complexes, SWI/SNF and RSC (remodeling the structure of chromatin). In the past 10 years, SWI/SNF and RSC chromatin remodellers have been a focus of research in various organisms, including animals, plants and fungi. In fungi, these two complexes have multiple functions, including roles in regulating hyphal differentiation, sporulation, stress responses, and pathogenicity. In addition to describing conserved structural properties and mechanisms of action, we highlight evidence for sequence and functional divergence in fungal evolution. This review provides a basis for further comparative analyses of the roles and regulatory mechanisms of the SWI/SNF and RSC complexes in taxonomically diverse fungi, laying a good foundation for potential applications in controlling pathogenic fungi.

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来源期刊
Mycology
Mycology Medicine-Infectious Diseases
CiteScore
9.10
自引率
0.00%
发文量
18
审稿时长
13 weeks
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