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首页> 外文期刊>eLife journal >Structural insights into the mechanism of the DEAH-box RNA helicase Prp43
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Structural insights into the mechanism of the DEAH-box RNA helicase Prp43

机译:DEAH-box RNA解旋酶Prp43机理的结构见解

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The DEAH-box helicase Prp43 is a key player in pre-mRNA splicing as well as the maturation of rRNAs. The exact modus operandi of Prp43 and of all other spliceosomal DEAH-box RNA helicases is still elusive. Here, we report crystal structures of Prp43 complexes in different functional states and the analysis of structure-based mutants providing insights into the unwinding and loading mechanism of RNAs. The Prp43?ATP-analog?RNA complex shows the localization of the RNA inside a tunnel formed by the two RecA-like and C-terminal domains. In the ATP-bound state this tunnel can be transformed into a groove prone for RNA binding by large rearrangements of the C-terminal domains. Several conformational changes between the ATP- and ADP-bound states explain the coupling of ATP hydrolysis to RNA translocation, mainly mediated by a β-turn of the RecA1 domain containing the newly identified RF motif. This mechanism is clearly different to those of other RNA helicases.
机译:DEAH-box解旋酶Prp43是mRNA前剪接以及rRNA成熟的关键参与者。 Prp43和所有其他剪接DEAH-box RNA解旋酶的确切操作方式仍然难以捉摸。在这里,我们报告在不同功能状态的Prp43配合物的晶体结构,以及基于结构的突变体的分析,提供了对RNA解链和加载机制的见解。 Prp43-ATP-类似物-RNA复合物显示RNA在由两个RecA样和C端结构域形成的通道内的定位。在ATP结合状态下,该通道可以通过C端结构域的重排而转变成易于结合RNA的凹槽。 ATP和ADP结合状态之间的几个构象变化解释了ATP水解与RNA易位的耦合,主要是由包含新近识别出的RF基序的RecA1域的β转角介导的。这种机制显然不同于其他RNA解旋酶。

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