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Rsc2 的 BAH 结构域是一个组蛋白 H3 结合结构域。

The BAH domain of Rsc2 is a histone H3 binding domain.

机构信息

MRC Genome Damage and Stability Centre, University of Sussex, Falmer, Brighton BN1 9RQ, UK and Cancer Research UK DNA Repair Enzymes Research Group, Genome Damage and Stability Centre, University of Sussex, Falmer, Brighton BN1 9RQ, UK.

出版信息

Nucleic Acids Res. 2013 Oct;41(19):9168-82. doi: 10.1093/nar/gkt662. Epub 2013 Jul 31.

Abstract

Bromo-adjacent homology (BAH) domains are commonly found in chromatin-associated proteins and fall into two classes; Remodels the Structure of Chromatin (RSC)-like or Sir3-like. Although Sir3-like BAH domains bind nucleosomes, the binding partners of RSC-like BAH domains are currently unknown. The Rsc2 subunit of the RSC chromatin remodeling complex contains an RSC-like BAH domain and, like the Sir3-like BAH domains, we find Rsc2 BAH also interacts with nucleosomes. However, unlike Sir3-like BAH domains, we find that Rsc2 BAH can bind to recombinant purified H3 in vitro, suggesting that the mechanism of nucleosome binding is not conserved. To gain insight into the Rsc2 BAH domain, we determined its crystal structure at 2.4 Å resolution. We find that it differs substantially from Sir3-like BAH domains and lacks the motifs in these domains known to be critical for making contacts with histones. We then go on to identify a novel motif in Rsc2 BAH that is critical for efficient H3 binding in vitro and show that mutation of this motif results in defective Rsc2 function in vivo. Moreover, we find this interaction is conserved across Rsc2-related proteins. These data uncover a binding target of the Rsc2 family of BAH domains and identify a novel motif that mediates this interaction.

摘要

溴邻位同源(BAH)结构域通常存在于与染色质相关的蛋白中,并分为两类:重塑染色质结构(RSC)样或 Sir3 样。虽然 Sir3 样 BAH 结构域与核小体结合,但 RSC 样 BAH 结构域的结合伙伴目前尚不清楚。RSC 染色质重塑复合物的 Rsc2 亚基包含一个 RSC 样 BAH 结构域,与 Sir3 样 BAH 结构域一样,我们发现 Rsc2 BAH 也与核小体相互作用。然而,与 Sir3 样 BAH 结构域不同,我们发现 Rsc2 BAH 可以在体外与重组纯化的 H3 结合,这表明核小体结合的机制没有保守。为了深入了解 Rsc2 BAH 结构域,我们确定了其 2.4Å分辨率的晶体结构。我们发现它与 Sir3 样 BAH 结构域有很大的不同,并且缺乏这些结构域中与组蛋白接触至关重要的基序。然后,我们确定了 Rsc2 BAH 中的一个新基序,该基序对于体外高效 H3 结合至关重要,并表明该基序的突变会导致体内 Rsc2 功能缺陷。此外,我们发现这种相互作用在 Rsc2 相关蛋白中是保守的。这些数据揭示了 Rsc2 家族 BAH 结构域的结合靶标,并确定了介导这种相互作用的新基序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f87/3799432/9c6c5ebbcdb5/gkt662f1p.jpg

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