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SARS-CoV-2 及相关冠状病毒 5'近端区域 SL5 RNA 的三级褶皱。

Tertiary folds of the SL5 RNA from the 5' proximal region of SARS-CoV-2 and related coronaviruses.

机构信息

Biophysics Program, Stanford University, Stanford, CA 94305.

Department of Microbiology and Immunology, Stanford University, Stanford, CA 94305.

出版信息

Proc Natl Acad Sci U S A. 2024 Mar 5;121(10):e2320493121. doi: 10.1073/pnas.2320493121. Epub 2024 Mar 1.

Abstract

Coronavirus genomes sequester their start codons within stem-loop 5 (SL5), a structured, 5' genomic RNA element. In most alpha- and betacoronaviruses, the secondary structure of SL5 is predicted to contain a four-way junction of helical stems, some of which are capped with UUYYGU hexaloops. Here, using cryogenic electron microscopy (cryo-EM) and computational modeling with biochemically determined secondary structures, we present three-dimensional structures of SL5 from six coronaviruses. The SL5 domain of betacoronavirus severe-acute-respiratory-syndrome-related coronavirus 2 (SARS-CoV-2), resolved at 4.7 Å resolution, exhibits a T-shaped structure, with its UUYYGU hexaloops at opposing ends of a coaxial stack, the T's "arms." Further analysis of SL5 domains from SARS-CoV-1 and MERS (7.1 and 6.4 to 6.9 Å resolution, respectively) indicate that the junction geometry and inter-hexaloop distances are conserved features across these human-infecting betacoronaviruses. The MERS SL5 domain displays an additional tertiary interaction, which is also observed in the non-human-infecting betacoronavirus BtCoV-HKU5 (5.9 to 8.0 Å resolution). SL5s from human-infecting alphacoronaviruses, HCoV-229E and HCoV-NL63 (6.5 and 8.4 to 9.0 Å resolution, respectively), exhibit the same coaxial stacks, including the UUYYGU-capped arms, but with a phylogenetically distinct crossing angle, an X-shape. As such, all SL5 domains studied herein fold into stable tertiary structures with cross-genus similarities and notable differences, with implications for potential protein-binding modes and therapeutic targets.

摘要

冠状病毒基因组将其起始密码子隔离在茎环 5(SL5)内,这是一个具有结构的 5'基因组 RNA 元件。在大多数α-和β-冠状病毒中,SL5 的二级结构预计包含一个四向结的螺旋茎,其中一些被 UUYYGU 六聚体环盖帽。在这里,我们使用低温电子显微镜(cryo-EM)和基于生物化学确定的二级结构的计算建模,展示了来自六种冠状病毒的 SL5 的三维结构。β-冠状病毒严重急性呼吸综合征相关冠状病毒 2(SARS-CoV-2)的 SL5 结构域,分辨率为 4.7 Å,呈现 T 形结构,其 UUYYGU 六聚体环位于同轴堆栈的相对两端,即 T 的“臂”。对 SARS-CoV-1 和 MERS(分辨率分别为 7.1 和 6.4 至 6.9 Å)的 SL5 结构域的进一步分析表明,连接几何形状和环间距离是这些感染人类的β-冠状病毒的保守特征。MERS 的 SL5 结构域显示了一个额外的三级相互作用,也在非感染人类的β-冠状病毒 BtCoV-HKU5 中观察到(分辨率为 5.9 至 8.0 Å)。感染人类的α-冠状病毒 HCoV-229E 和 HCoV-NL63 的 SL5(分辨率分别为 6.5 和 8.4 至 9.0 Å),表现出相同的同轴堆栈,包括 UUYYGU 盖帽臂,但具有系统发育上不同的交叉角度,呈 X 形。因此,本文研究的所有 SL5 结构域都折叠成具有跨属相似性和显著差异的稳定三级结构,这对潜在的蛋白质结合模式和治疗靶点具有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c338/10927501/2d37d7132b29/pnas.2320493121fig01.jpg

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