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热球菌 DEAD 框解旋酶 Hera 的 RNA 结合域对 RNA 底物中两个不同元件的识别。

Recognition of two distinct elements in the RNA substrate by the RNA-binding domain of the T. thermophilus DEAD box helicase Hera.

机构信息

Institute for Physical Chemistry, University of Muenster, Corrensstrasse 30, D-48149 Muenster, Germany.

出版信息

Nucleic Acids Res. 2013 Jul;41(12):6259-72. doi: 10.1093/nar/gkt323. Epub 2013 Apr 25.

Abstract

DEAD box helicases catalyze the ATP-dependent destabilization of RNA duplexes. Whereas duplex separation is mediated by the helicase core shared by all members of the family, flanking domains often contribute to binding of the RNA substrate. The Thermus thermophilus DEAD-box helicase Hera (for "heat-resistant RNA-binding ATPase") contains a C-terminal RNA-binding domain (RBD). We have analyzed RNA binding to the Hera RBD by a combination of mutational analyses, nuclear magnetic resonance and X-ray crystallography, and identify residues on helix α1 and the C-terminus as the main determinants for high-affinity RNA binding. A crystal structure of the RBD in complex with a single-stranded RNA resolves the RNA-protein interactions in the RBD core region around helix α1. Differences in RNA binding to the Hera RBD and to the structurally similar RBD of the Bacillus subtilis DEAD box helicase YxiN illustrate the versatility of RNA recognition motifs as RNA-binding platforms. Comparison of chemical shift perturbation patterns elicited by different RNAs, and the effect of sequence changes in the RNA on binding and unwinding show that the RBD binds a single-stranded RNA region at the core and simultaneously contacts double-stranded RNA through its C-terminal tail. The helicase core then unwinds an adjacent RNA duplex. Overall, the mode of RNA binding by Hera is consistent with a possible function as a general RNA chaperone.

摘要

DEAD 框解旋酶催化 ATP 依赖性 RNA 双链体的解旋。尽管双链体的分离是由家族所有成员共享的解旋酶核心介导的,但侧翼结构域通常有助于 RNA 底物的结合。嗜热高温球菌 DEAD 框解旋酶 Hera(“耐热 RNA 结合 ATP 酶”)包含 C 末端 RNA 结合域(RBD)。我们通过突变分析、核磁共振和 X 射线晶体学的组合分析了 Hera RBD 与 RNA 的结合,确定了螺旋α1 和 C 末端上的残基是高亲和力 RNA 结合的主要决定因素。与单链 RNA 复合物的 RBD 晶体结构解决了 RBD 核心区域中围绕螺旋α1 的 RNA-蛋白相互作用。Hera RBD 与枯草芽孢杆菌 DEAD 框解旋酶 YxiN 的结构相似的 RBD 对 RNA 的结合差异说明了 RNA 识别基序作为 RNA 结合平台的多功能性。不同 RNA 引起的化学位移扰动模式的比较,以及 RNA 序列变化对结合和解旋的影响表明,RBD 在核心处结合单链 RNA 区域,同时通过其 C 末端尾巴与双链 RNA 接触。然后,解旋酶核心解开相邻的 RNA 双链体。总体而言,Hera 的 RNA 结合模式与作为通用 RNA 伴侣的可能功能一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1753/3695512/10442cc8ca5f/gkt323f1p.jpg

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