You Shihyun, Stump Decherd D, Branch Andrea D, Rice Charles M
Center for the Study of Hepatitis C, Laboratory of Virology and Infectious Disease, The Rockefeller University, New York, New York 10021, USA.
J Virol. 2004 Feb;78(3):1352-66. doi: 10.1128/jvi.78.3.1352-1366.2004.
RNA structures play key roles in the replication of RNA viruses. Sequence alignment software, thermodynamic RNA folding programs, and classical comparative phylogenetic analysis were used to build models of six RNA elements in the coding region of the hepatitis C virus (HCV) RNA-dependent RNA polymerase, NS5B. The importance of five of these elements was evaluated by site-directed mutagenesis of a subgenomic HCV replicon. Mutations disrupting one of the predicted stem-loop structures, designated 5BSL3.2, blocked RNA replication, implicating it as an essential cis-acting replication element (CRE). 5BSL3.2 is about 50 bases in length and is part of a larger predicted cruciform structure (5BSL3). As confirmed by RNA structure probing, 5BSL3.2 consists of an 8-bp lower helix, a 6-bp upper helix, a 12-base terminal loop, and an 8-base internal loop. Mutational analysis and structure probing were used to explore the importance of these features. Primary sequences in the loops were shown to be important for HCV RNA replication, and the upper helix appears to serve as an essential scaffold that helps maintain the overall RNA structure. Unlike certain picornavirus CREs, whose function is position independent, 5BSL3.2 function appears to be context dependent. Understanding the role of 5BSL3.2 and determining how this new CRE functions in the context of previously identified elements at the 5' and 3' ends of the RNA genome should provide new insights into HCV RNA replication.
RNA结构在RNA病毒的复制中发挥着关键作用。利用序列比对软件、热力学RNA折叠程序以及经典的比较系统发育分析,构建了丙型肝炎病毒(HCV)RNA依赖的RNA聚合酶NS5B编码区中六个RNA元件的模型。通过对亚基因组HCV复制子进行定点诱变,评估了其中五个元件的重要性。破坏其中一个预测的茎环结构(命名为5BSL3.2)的突变会阻断RNA复制,这表明它是一个必需的顺式作用复制元件(CRE)。5BSL3.2长度约为50个碱基,是一个更大的预测十字形结构(5BSL3)的一部分。经RNA结构探测证实,5BSL3.2由一个8碱基对的下螺旋、一个6碱基对的上螺旋、一个12碱基的末端环和一个8碱基的内环组成。利用突变分析和结构探测来探究这些特征的重要性。结果表明,环中的一级序列对HCV RNA复制很重要,而上螺旋似乎作为一个必需的支架,有助于维持整体RNA结构。与某些功能与位置无关的微小RNA病毒CRE不同,5BSL3.2的功能似乎依赖于上下文。了解5BSL3.2的作用,并确定这个新的CRE在RNA基因组5'和3'端先前确定的元件背景下如何发挥功能,应该会为HCV RNA复制提供新的见解。