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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Structural and dynamic properties of the C-terminal region of the Escherichia coli RNA chaperone Hfq: integrative experimental and computational studies
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Structural and dynamic properties of the C-terminal region of the Escherichia coli RNA chaperone Hfq: integrative experimental and computational studies

机译:大肠杆菌RNA伴侣HFQ的C末端区域的结构和动态特性:一体化实验和计算研究

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摘要

Escherichia coli, hexameric Hfq is an important RNA chaperone that facilitates small RNA-mediated post-transcriptional regulation. The Hfq monomer consists of an evolutionarily conserved Sm domain (residues 1-65) and a flexible C-terminal region (residues 66-102). It has been recognized that the existence of the C-terminal region is important for the function of Hfq, but its detailed structural and dynamic properties remain elusive due to its disordered nature. In this work, using integrative experimental techniques, such as nuclear magnetic resonance spectroscopy and small-angle X-ray scattering, as well as multi-scale computational simulations, new insights into the structure and dynamics of the C-terminal region in the context of the Hfq hexamer are provided. Although the C-terminal region is intrinsically disordered, some residues (83-86) are motionally restricted. The hexameric core may affect the secondary structure propensity of the C-terminal region, due to transient interactions between them. The residues at the rim and the proximal side of the core have significantly more transient contacts with the C-terminal region than those residues at the distal side, which may facilitate the function of the C-terminal region in the release of double-stranded RNAs and the cycling of small non-coding RNAs. Structure ensembles constructed by fitting the experimental data also support that the C-terminal region prefers to locate at the proximal side. From multi-scale simulations, we propose that the C-terminal region may play a dual role of steric effect (especially at the proximal side) and recruitment (at the both sides) in the binding process of RNA substrates. Interestingly, we have found that these motionally restricted residues may serve as important binding sites for the incoming RNAs that is probably driven by favorable electrostatic interactions. These integrative studies may aid in our understanding of the functional role of the C-terminal region of Hfq.
机译:六偏美HFQ是大肠杆菌,其重要的RNA伴侣伴促进了小RNA介导的转录后调节。 HFQ单体由进化保守的SM结构域(残基1-65)和柔性C末端区域(残留物66-102)组成。已经认识到,C末端区域的存在对于HFQ的功能是重要的,但由于其无序性质,其详细的结构和动态性能仍然难以实现。在这项工作中,使用核磁共振谱和小角度X射线散射的一致性实验技术,以及多尺度计算模拟,在上下文中的C终端区域的结构和动态的新见解提供了HFQ六六角形。虽然C末端区域是本质上的混乱,但一些残留物(83-86)局部受到局部限制。由于它们之间的瞬态相互作用,六聚核心可能影响C末端区域的二级结构倾向。轮辋处的残余物和芯的近侧具有比远端侧的那些残基具有明显的瞬态触点,这可以促进C末端区域在双链RNA的释放中的功能和小非编码RNA的循环。通过拟合实验数据构造的结构集合也支持C终端区域喜欢在近侧定位。根据多尺度模拟,我们提出了C末端区域可以在RNA基材的结合过程中发挥空间效果(特别是在近侧侧)的双重作用和募集(在两侧)。有趣的是,我们发现这些微小限制的残留物可以作为最重要的结合位点,其用于输入的RNA可能是由有利的静电相互作用驱动的。这些综合研究可能有助于了解HFQ的C末端区域的功能作用。

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