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SWI/SNF 型复合物与转录因子的相互作用:一种关键的调控相互作用。

SWI/SNF-type complexes-transcription factor interplay: a key regulatory interaction.

作者信息

Maassen Anna, Steciuk Jaroslaw, Wilga Magdalena, Szurmak Jakub, Garbicz Damian, Sarnowska Elzbieta, Sarnowski Tomasz J

机构信息

Institute of Biochemistry and Biophysics Polish Academy of Sciences, Warsaw, Poland.

Maria Sklodowska-Curie National Research Institute of Oncology, Warsaw, Poland.

出版信息

Cell Mol Biol Lett. 2025 Mar 10;30(1):30. doi: 10.1186/s11658-025-00704-y.

Abstract

ATP-dependent switch/sucrose nonfermenting-type chromatin remodeling complexes (SWI/SNF CRCs) are multiprotein machineries altering chromatin structure, thus controlling the accessibility of genomic DNA to various regulatory proteins including transcription factors (TFs). SWI/SNF CRCs are highly evolutionarily conserved among eukaryotes. There are three main subtypes of SWI/SNF CRCs: canonical (cBAF), polybromo (pBAF), and noncanonical (ncBAF) in humans and their functional Arabidopsis counterparts SYD-associated SWI/SNF (SAS), MINU-associated SWI/SNF (MAS), and BRAHMA (BRM)-associated SWI/SNF (BAS). Here, we highlight the importance of interplay between SWI/SNF CRCs and TFs in human and Arabidopsis and summarize recent advances demonstrating their role in controlling important regulatory processes. We discuss possible mechanisms involved in TFs and SWI/SNF CRCs-dependent transcriptional control of gene expression. We indicate that Arabidopsis may serve as a valuable model for the identification of evolutionarily conserved SWI/SNF-TF interactions and postulate that further exploration of the TFs and SWI/SNF CRCs-interplay, especially in the context of the role of particular SWI/SNF CRC subtypes, TF type, as well as cell/tissue and conditions, among others, will help address important questions related to the specificity of SWI/SNF-TF interactions and the sequence of events occurring on their target genes.

摘要

ATP依赖的开关/蔗糖不发酵型染色质重塑复合物(SWI/SNF CRCs)是多蛋白机制,可改变染色质结构,从而控制基因组DNA对包括转录因子(TFs)在内的各种调节蛋白的可及性。SWI/SNF CRCs在真核生物中具有高度的进化保守性。SWI/SNF CRCs主要有三种亚型:人类中的经典型(cBAF)、多溴型(pBAF)和非经典型(ncBAF),以及其在拟南芥中的功能对应物SYD相关的SWI/SNF(SAS)、MINU相关的SWI/SNF(MAS)和BRAHMA(BRM)相关的SWI/SNF(BAS)。在这里,我们强调了SWI/SNF CRCs与TFs在人类和拟南芥中相互作用的重要性,并总结了最近的进展,这些进展证明了它们在控制重要调节过程中的作用。我们讨论了TFs和SWI/SNF CRCs依赖的基因表达转录控制中涉及的可能机制。我们指出,拟南芥可能是鉴定进化保守的SWI/SNF-TF相互作用的有价值模型,并推测进一步探索TFs和SWI/SNF CRCs之间的相互作用,特别是在特定SWI/SNF CRC亚型、TF类型以及细胞/组织和条件等背景下,将有助于解决与SWI/SNF-TF相互作用的特异性及其靶基因上发生的事件顺序相关的重要问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec7a/11895388/1bba632facb5/11658_2025_704_Fig1_HTML.jpg

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