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SHAPE analysis of the RNA secondary structure of the Mouse Hepatitis Virus 5 ' untranslated region and N-terminal nsp1 coding sequences

机译:小鼠肝炎病毒5'非翻译区和N端nsp1编码序列的RNA二级结构的SHAPE分析

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摘要

SHAPE technology was used to analyze RNA secondary structure of the 5' most 474 nts of the MHV-A59 genome encompassing the minimal 5' cis-acting region required for defective interfering RNA replication. The structures generated were in agreement with previous characterizations of SL1 through SL4 and two recently predicted secondary structure elements, S5 and SL5A. SHAPE provided biochemical support for four additional stem-loops not previously functionally investigated in MHV. Secondary structure predictions for 5' regions of MHV-A59, BCoV and SARS-CoV were similar despite high sequence divergence. The pattern of SHAPE reactivity of in virio genomic RNA, ex virio genomic RNA, and in vitro synthesized RNA was similar, suggesting that binding of N protein or other proteins to virion RNA fails to protect the RNA from reaction with lipid permeable SHAPE reagent. Reverse genetic experiments suggested that SL5C and SL6 within the nsp1 coding sequence are not required for viral replication. (C) 2014 Elsevier Inc. All rights reserved.
机译:SHAPE技术用于分析MHV-A59基因组的5'最多474 nt的RNA二级结构,其中包含有缺陷的干扰RNA复制所需的最小5'顺式作用区域。生成的结构与SL1至SL4的先前特征以及两个最近预测的二级结构元素S5和SL5A相符。 SHAPE为以前在MHV中未进行功能研究的另外四个茎环提供了生化支持。尽管序列差异很大,但对于MHV-A59,BCoV和SARS-CoV 5'区的二级结构预测却相似。体内基因组RNA,体外基因组RNA和体外合成的RNA中SHAPE反应性的模式相似,表明N蛋白或其他蛋白与病毒体RNA的结合不能保护RNA免于与脂质可渗透的SHAPE试剂反应。反向遗传实验表明,nsp1编码序列内的SL5C和SL6对病毒复制不是必需的。 (C)2014 Elsevier Inc.保留所有权利。

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