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连接组蛋白 Hho1 调节 ATP 依赖的染色质重塑复合物的活性。

The linker histone Hho1 modulates the activity of ATP-dependent chromatin remodeling complexes.

机构信息

Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias Biológicas, Universidad de Concepción, Barrio Universitario s/n, Concepción 4070043, Chile.

Stowers Institute for Medical Research, 1000 E 50(th) Street, Kansas City, MO 64110, USA.

出版信息

Biochim Biophys Acta Gene Regul Mech. 2022 Jan;1865(1):194781. doi: 10.1016/j.bbagrm.2021.194781. Epub 2021 Dec 25.

Abstract

Diverse factors play roles in chromatin dynamics, including linker proteins. Among them are high mobility group (HMG) box family proteins and linker histones. In the yeast Saccharomyces cerevisiae, Hmo1 has been identified as an HMG-box protein. This protein displays properties that are in agreement with this allocation. However, a number of studies have postulated that Hmo1 functions as a linker histone in yeast. On the other hand, when discovered, the Hho1 protein was identified as a linker histone. While multiple studies support this classification, some findings point to characteristics of Hho1 that are dissimilar to those commonly assigned to linker histones. In order to better understand the roles played by Hmo1 and Hho1 in chromatin dynamics and transcriptional regulation, we performed several analyses directly comparing these two proteins. Our analyses of genome-wide binding profiles support the belonging of Hmo1 to the HMGB family and Hho1 to the linker histones family. Interestingly, by performing protein-protein interaction analyses we found that both Hmo1 and Hho1 display physical interaction with the ATP-dependent chromatin remodeling complexes RSC, ISW1a and SWI/SNF. Moreover, by carrying out nucleosome remodeling assays, we found that both proteins stimulate the activity of the ISW1a complex. However, in the case of RSC, Hmo1 and Hho1 displayed differential properties, with Hho1 mainly showing an inhibitory effect. Our results are in agreement with the opposite roles played by RSC and ISW1a in chromatin dynamics and transcriptional regulation, and expand the view for the roles played by Hho1 and linker histones.

摘要

多种因素在染色质动力学中发挥作用,包括连接蛋白。其中包括高迁移率族(HMG)盒家族蛋白和连接组蛋白。在酵母酿酒酵母中,已经鉴定出 Hmo1 是一种 HMG 盒蛋白。该蛋白的特性与其分配一致。然而,许多研究假设 Hmo1 在酵母中作为连接组蛋白发挥作用。另一方面,当发现 Hho1 蛋白时,它被鉴定为连接组蛋白。虽然多项研究支持这种分类,但一些发现指出 Hho1 的特征与通常赋予连接组蛋白的特征不同。为了更好地理解 Hmo1 和 Hho1 在染色质动力学和转录调控中的作用,我们直接比较了这两种蛋白质进行了多项分析。我们对全基因组结合谱的分析支持 Hmo1 属于 HMGB 家族和 Hho1 属于连接组蛋白家族。有趣的是,通过进行蛋白质-蛋白质相互作用分析,我们发现 Hmo1 和 Hho1 都与 ATP 依赖性染色质重塑复合物 RSC、ISW1a 和 SWI/SNF 发生物理相互作用。此外,通过进行核小体重塑测定,我们发现这两种蛋白质都刺激了 ISW1a 复合物的活性。然而,在 RSC 的情况下,Hmo1 和 Hho1 表现出不同的特性,Hho1 主要表现出抑制作用。我们的结果与 RSC 和 ISW1a 在染色质动力学和转录调控中发挥的相反作用一致,并扩展了 Hho1 和连接组蛋白所起作用的观点。

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