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一种用于大型 RNA 结构测定的整合 NMR-SAXS 方法定义了一种具有切割活性的 Neurospora Varkud 卫星核酶的无底物状态。

An integrative NMR-SAXS approach for structural determination of large RNAs defines the substrate-free state of a trans-cleaving Neurospora Varkud Satellite ribozyme.

机构信息

Department of Biochemistry and Molecular Medicine, Université de Montréal, Box 6128, Downtown Station, Montreal, QC H3C 3J7, Quebec, Canada.

出版信息

Nucleic Acids Res. 2021 Nov 18;49(20):11959-11973. doi: 10.1093/nar/gkab963.

Abstract

The divide-and-conquer strategy is commonly used for protein structure determination, but its applications to high-resolution structure determination of RNAs have been limited. Here, we introduce an integrative approach based on the divide-and-conquer strategy that was undertaken to determine the solution structure of an RNA model system, the Neurospora VS ribozyme. NMR and SAXS studies were conducted on a minimal trans VS ribozyme as well as several isolated subdomains. A multi-step procedure was used for structure determination that first involved pairing refined NMR structures with SAXS data to obtain structural subensembles of the various subdomains. These subdomain structures were then assembled to build a large set of structural models of the ribozyme, which was subsequently filtered using SAXS data. The resulting NMR-SAXS structural ensemble shares several similarities with the reported crystal structures of the VS ribozyme. However, a local structural difference is observed that affects the global fold by shifting the relative orientation of the two three-way junctions. Thus, this finding highlights a global conformational change associated with substrate binding in the VS ribozyme that is likely critical for its enzymatic activity. Structural studies of other large RNAs should benefit from similar integrative approaches that allow conformational sampling of assembled fragments.

摘要

分而治之策略常用于蛋白质结构测定,但将其应用于 RNA 的高分辨率结构测定一直受到限制。在这里,我们介绍了一种基于分而治之策略的综合方法,该方法用于确定 RNA 模型系统 Neurospora VS 核酶的溶液结构。对最小化的跨 VS 核酶以及几个分离的亚结构域进行了 NMR 和 SAXS 研究。结构测定采用多步程序,首先将经过细化的 NMR 结构与 SAXS 数据配对,以获得各个亚结构域的结构亚集合。然后将这些亚结构域组装起来,构建核酶的一组大型结构模型,然后使用 SAXS 数据对其进行过滤。所得 NMR-SAXS 结构集合与已报道的 VS 核酶的晶体结构具有一些相似之处。然而,观察到局部结构差异,通过改变两个三通接头的相对取向来影响整体折叠。因此,这一发现突出了与 VS 核酶底物结合相关的全局构象变化,这对于其酶活性可能至关重要。其他大型 RNA 的结构研究应受益于类似的综合方法,这些方法可以对组装片段进行构象采样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0df/8599749/51f15b75e456/gkab963fig1.jpg

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