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BRIP1 和 BRIP2 是拟南芥 SWI/SNF 复合物的核心亚基。

BRAHMA-interacting proteins BRIP1 and BRIP2 are core subunits of Arabidopsis SWI/SNF complexes.

机构信息

State Key Laboratory of Biocontrol, Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-Sen University, Guangzhou, China.

London Research and Development Centre, Agriculture and Agri-Food Canada, London, Ontario, Canada.

出版信息

Nat Plants. 2020 Aug;6(8):996-1007. doi: 10.1038/s41477-020-0734-z. Epub 2020 Aug 3.

Abstract

Switch defective/sucrose non-fermentable (SWI/SNF) chromatin remodelling complexes are multi-protein machineries that control gene expression by regulating chromatin structure in eukaryotes. However, the full subunit composition of SWI/SNF complexes in plants remains unclear. Here we report that in Arabidopsis thaliana, two homologous glioma tumour suppressor candidate region domain-containing proteins, named BRAHMA-interacting proteins 1 (BRIP1) and BRIP2, are core subunits of plant SWI/SNF complexes. brip1 brip2 double mutants exhibit developmental phenotypes and a transcriptome remarkably similar to those of BRAHMA (BRM) mutants. Genetic interaction tests indicated that BRIP1 and BRIP2 act together with BRM to regulate gene expression. Furthermore, BRIP1 and BRIP2 physically interact with BRM-containing SWI/SNF complexes and extensively co-localize with BRM on chromatin. Simultaneous mutation of BRIP1 and BRIP2 results in decreased BRM occupancy at almost all BRM target loci and substantially reduced abundance of the SWI/SNF assemblies. Together, our work identifies new core subunits of BRM-containing SWI/SNF complexes in plants and uncovers the essential role of these subunits in maintaining the abundance of SWI/SNF complexes in plants.

摘要

SWI/SNF 染色质重塑复合物的开关缺陷/蔗糖非发酵(SWI/SNF)是真核生物中通过调节染色质结构来控制基因表达的多蛋白机器。然而,植物中 SWI/SNF 复合物的完整亚基组成仍不清楚。在这里,我们报道在拟南芥中,两个同源的神经胶质瘤肿瘤抑制候选区域结构域包含蛋白,命名为 BRM 相互作用蛋白 1(BRIP1)和 BRIP2,是植物 SWI/SNF 复合物的核心亚基。brip1brip2 双突变体表现出发育表型和转录组与 BRM 突变体非常相似。遗传相互作用测试表明,BRIP1 和 BRIP2 与 BRM 一起共同调节基因表达。此外,BRIP1 和 BRIP2 与包含 BRM 的 SWI/SNF 复合物物理相互作用,并在染色质上与 BRM 广泛共定位。BRIP1 和 BRIP2 的同时突变导致几乎所有 BRM 靶标基因座的 BRM 占有率降低,并且 SWI/SNF 组装体的丰度显著降低。总之,我们的工作鉴定了植物中包含 BRM 的 SWI/SNF 复合物的新核心亚基,并揭示了这些亚基在维持植物中 SWI/SNF 复合物丰度中的重要作用。

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