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首页> 外文期刊>RNA >Evidence of reciprocal tertiary interactions between conserved motifs involved in organizing RNA structure essential for internal initiation of translation.
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Evidence of reciprocal tertiary interactions between conserved motifs involved in organizing RNA structure essential for internal initiation of translation.

机译:参与组织内部翻译必不可少的RNA结构的保守基序之间相互三级相互作用的证据。

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摘要

Internal ribosome entry site (IRES) elements consist of highly structured RNA regions that determine internal initiation of translation. We have previously shown that the foot-and-mouth disease virus (FMDV) IRES contains a GNRA tetraloop spanning residues G178UAA181. Here we show that tertiary RNA interactions dependent on the GNRA motif determine the structural organization of the central domain. By using mutational analysis in combination with RNA probing, we have identified distant reciprocal interactions between the GNRA motif and the invariant region G240CACG244, termed motif A. Mutations in motif A caused a decrease in IRES activity as severe as the GUAG substitution in the GNRA motif. Substitutions in either GNRA or motif A sequences induced a common reorganization around the conserved R199AAA202 stem-loop, suggesting that the latter contributes to stabilize the GNRA-motif A interaction. This finding was also consistent with a significant increase in the efficiency of RNA-RNA interactions determined in gel shift assays using as probe the hairpin that contains the GNRA motif compared to a transcript encompassing the entire apical region of the central domain. Thus, we propose that the central domain of the FMDV IRES contains a structural conformation essential for IRES activity stabilized by a tertiary contact involving residues in the GNRA tetraloop and motif A conserved sequences.
机译:内部核糖体进入位点(IRES)元件由高度结构化的RNA区域组成,这些区域决定翻译的内部起始。先前我们已经显示口蹄疫病毒(FMDV)的IRES包含GNRA四环残基G178UAA181。在这里我们显示依赖于GNRA基序的第三级RNA相互作用决定了中央结构域的结构组织。通过使用突变分析与RNA探测相结合,我们已经确定了GNRA基序与不变区域G240CACG244之间的远距离互作,称为基元A。基元A中的突变导致IRES活性下降的程度与GNRA基元中的GUAG取代一样严重。 GNRA或基序A序列中的取代均可诱导保守的R199AAA202茎环周围的共同重组,这表明后者有助于稳定GNRA-基序A相互作用。该发现还与凝胶移位测定中确定的RNA-RNA相互作用效率的显着提高相一致,与包含中心结构域整个顶端区域的转录本相比,使用包含GNRA基序的发夹作为探针进行了凝胶迁移测定。因此,我们提出,FMDV IRES的中央结构域包含一个结构构象,该结构构象对于通过涉及GNRA四环残基和基序A保守序列的三级接触稳定的IRES活性至关重要。

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