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Solution structure of the HIV-1 frameshift inducing stem-loop RNA

机译:HIV-1移码诱导茎环RNA的溶液结构

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The translation of reverse transcriptase and other essential viral proteins from the HIV-1 Pol mRNA requires a programmed -1 ribosomal frameshift. This frameshift is induced by two highly conserved elements within the HIV-1 mRNA: a slippery sequence comprised of a UUUUUUA heptamer, and a downstream stem-loop structure. We have determined the structure of the HIV-1 frameshift inducing RNA stem-loop, using multidimensional heteronuclear nuclear magnetic resonance (NMR) methods. The 22 nucleotide RNA solution structure [root mean squared deviation (r.m.s.d.) = 1.2 A] was determined from 475 nuclear Overhauser effect (NOE)-derived distance restrains, 20 residual dipolar couplings and direct detection of hydrogen bonds via scalar couplings. We find that the frameshift inducing stem-loop is an A-form helix capped by a structured ACAA tetraloop. The ACAA tetraloop is stabilized by an equilateral 5' and 3' stacking pattern, a sheared A-A pair and a cross-strand hydrogen bond. Unexpectedly, the ACAA tetraloop structure is nearly identical to a known tetraloop fold, previously identified in the RNase III recognition site from Saccharomyces cerevisiae.
机译:从HIV-1 Pol mRNA逆转录酶和其他必需病毒蛋白的翻译需要程序化的-1核糖体移码。此移码是由HIV-1 mRNA中的两个高度保守的元件诱导的:由UUUUUUA七聚体组成的滑序列和下游茎环结构。我们已经使用多维异核核磁共振(NMR)方法确定了HIV-1移码诱导RNA茎环的结构。 22个核苷酸的RNA溶液结构[均方根偏差(r.m.s.d.)= 1.2 A]由475个核Overhauser效应(NOE)衍生的距离限制,20个残余偶极偶合和通过标量偶合直接检测氢键确定。我们发现,移码诱导茎环是由结构化ACAA四环覆盖的A型螺旋。 ACAA四环通过等边的5'和3'堆叠方式,剪切的A-A对和交叉链氢键稳定。出乎意料的是,ACAA四环结构与已知的四环折叠几乎相同,该折叠先前在酿酒酵母的RNase III识别位点鉴定。

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