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Direct structural evidence for formation of a stem-loop structure involved in ribosomal frameshifting in human immunodeficiency virus type 1

机译:直接结构证据表明参与人类1型免疫缺陷病毒的核糖体移码的茎环结构

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Programmed ribosomal frameshifting in viral messenger RNA occurs in response to neighboring sequence elements consisting of: a frameshift site, a spacer, and a downstream enhancer sequence. In human immunodeficiency virus type 1 (HIV-1) mRNA, this sequence element has a potential to form either a stem-loop or a pseudoknot structure. Based on many mutational studies, the stem-loop structure has been proposed for the downstream enhancer region of the HIV-1 mRNA. This stimulatory stem-loop structure is separated from the shift site by a spacer of seven nucleotides. In contrast, a recent report has proposed an alternative model in which the bases in the spacer sequence from a pseudoknot structure as the downstream enhancer sequence [Du et al., Biochemistry 35 (1996) 4187-4198.]. Using UV melting and enzymatic mapping analyses, we have investigated the conformation of the sequence region involved in ribosomal frameshifting in HIV-1. Our S_1, V_1 and T_1 endonuclease mappings, together with UV melting analysis, clearly indicate that this sequence element of the HIV-1 mRNA frameshift site forms a stem-loop structure, not a pseudoknot structure. This finding further supports the stem-loop structure proposed by many mutational studies for the downstream enhancer sequence of the HIV-1 mRNA.
机译:病毒信使RNA中的程序性核糖体移码是响应邻近序列元素而发生的,该序列元素包括:移码位点,间隔子和下游增强子序列。在人类1型免疫缺陷病毒(HIV-1)mRNA中,该序列元件具有形成茎环或假结结构的潜力。基于许多突变研究,已经提出了HIV-1 mRNA下游增强子区域的茎环结构。这种刺激性茎-环结构通过七个核苷酸的间隔区与移位位点隔开。相反,最近的报告提出了一种替代模型,其中来自假结结构的间隔序列中的碱基作为下游增强子序列[Du等人,Biochemistry 35(1996)4187-4198。使用紫外线熔解和酶促作图分析,我们已经调查了参与HIV-1核糖体移码的序列区域的构象。我们的S_1,V_1和T_1核酸内切酶图谱以及UV熔解分析清楚地表明,HIV-1 mRNA移码位点的这一序列元件形成茎环结构,而不是假结结构。这一发现进一步支持了许多突变研究提出的针对HIV-1 mRNA下游增强子序列的茎环结构。

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