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RNA 二聚化在 SARS 冠状病毒的核糖体移码中起作用。

RNA dimerization plays a role in ribosomal frameshifting of the SARS coronavirus.

机构信息

Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston, SC 29425, USA.

出版信息

Nucleic Acids Res. 2013 Feb 1;41(4):2594-608. doi: 10.1093/nar/gks1361. Epub 2012 Dec 28.

Abstract

Messenger RNA encoded signals that are involved in programmed -1 ribosomal frameshifting (-1 PRF) are typically two-stemmed hairpin (H)-type pseudoknots (pks). We previously described an unusual three-stemmed pseudoknot from the severe acute respiratory syndrome (SARS) coronavirus (CoV) that stimulated -1 PRF. The conserved existence of a third stem-loop suggested an important hitherto unknown function. Here we present new information describing structure and function of the third stem of the SARS pseudoknot. We uncovered RNA dimerization through a palindromic sequence embedded in the SARS-CoV Stem 3. Further in vitro analysis revealed that SARS-CoV RNA dimers assemble through 'kissing' loop-loop interactions. We also show that loop-loop kissing complex formation becomes more efficient at physiological temperature and in the presence of magnesium. When the palindromic sequence was mutated, in vitro RNA dimerization was abolished, and frameshifting was reduced from 15 to 5.7%. Furthermore, the inability to dimerize caused by the silent codon change in Stem 3 of SARS-CoV changed the viral growth kinetics and affected the levels of genomic and subgenomic RNA in infected cells. These results suggest that the homodimeric RNA complex formed by the SARS pseudoknot occurs in the cellular environment and that loop-loop kissing interactions involving Stem 3 modulate -1 PRF and play a role in subgenomic and full-length RNA synthesis.

摘要

信使 RNA 编码的信号参与程序性 -1 核糖体移码(-1 PRF),通常是两茎发夹(H)型假结(pks)。我们之前描述了一种来自严重急性呼吸综合征(SARS)冠状病毒(CoV)的不寻常的三茎假结,它刺激了 -1 PRF。第三个茎环的保守存在表明存在一个重要的、迄今为止未知的功能。在这里,我们提供了新的信息,描述了 SARS 假结的第三个茎的结构和功能。我们通过嵌入在 SARS-CoV Stem 3 中的回文序列发现了 RNA 二聚体。进一步的体外分析表明,SARS-CoV RNA 二聚体通过“亲吻”环-环相互作用组装。我们还表明,环-环亲吻复合物的形成在生理温度和存在镁的情况下更加有效。当回文序列发生突变时,体外 RNA 二聚体形成被废除,移码率从 15 降低到 5.7%。此外,SARS-CoV Stem 3 中沉默密码子的改变导致无法二聚化,改变了病毒的生长动力学,并影响了感染细胞中基因组和亚基因组 RNA 的水平。这些结果表明,SARS 假结形成的同源 RNA 二聚体发生在细胞环境中,涉及 Stem 3 的环-环亲吻相互作用调节 -1 PRF,并在亚基因组和全长 RNA 合成中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe81/3575852/51e75bc78a72/gks1361f1p.jpg

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