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首页> 外文期刊>eLife journal >Folding behavior of a T-shaped, ribosome-binding translation enhancer implicated in a wide-spread conformational switch
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Folding behavior of a T-shaped, ribosome-binding translation enhancer implicated in a wide-spread conformational switch

机译:T形核糖体结合翻译增强子的折叠行为涉及广泛的构象开关。

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Turnip crinkle virus contains a T-shaped, ribosome-binding, translation enhancer (TSS) in its 3’UTR that serves as a hub for interactions throughout the region. The viral RNA-dependent RNA polymerase (RdRp) causes the TSS/surrounding region to undergo a conformational shift postulated to inhibit translation. Using optical tweezers (OT) and steered molecular dynamic simulations (SMD), we found that the unusual stability of pseudoknotted element H4a/Ψ3 required five upstream adenylates, and H4a/Ψ3 was necessary for cooperative association of two other hairpins (H5/H4b) in Mg2+. SMD recapitulated the TSS unfolding order in the absence of Mg2+, showed dependence of the resistance to pulling on the 3D orientation and gave structural insights into the measured contour lengths of the TSS structure elements. Adenylate mutations eliminated one-site RdRp binding to the 3’UTR, suggesting that RdRp binding to the adenylates disrupts H4a/Ψ3, leading to loss of H5/H4b interaction and promoting a conformational switch interrupting translation and promoting replication.
机译:萝卜皱纹病毒在其3'UTR中包含T形,核糖体结合,翻译增强子(TSS),可作为整个区域相互作用的枢纽。病毒RNA依赖性RNA聚合酶(RdRp)使TSS /周围区域发生构象变化,该构象变化被认为抑制翻译。使用光镊(OT)和操纵分子动力学模拟(SMD),我们发现假结单元H4a /Ψ3的异常稳定性需要五个上游腺苷酸,而H4a /Ψ3对于另外两个发夹(H5 / H4b)的协同结合是必需的在Mg2 +中。在没有Mg2 +的情况下,SMD概括了TSS的展开顺序,显示了对3D方向的拉力的依赖性,并提供了对所测量的TSS结构元素轮廓长度的结构见解。腺苷酸突变消除了与3’UTR的一处RdRp结合,这表明RdRp与腺苷酸的结合破坏了H4a /Ψ3,导致H5 / H4b相互作用丧失,并促进构象开关中断翻译并促进复制。

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