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Discriminatory RNP remodeling by the DEAD-box protein DED1.

机译:DEAD-box蛋白DED1对RNP进行区分。

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DExH/D proteins catalyze NTP-driven rearrangements of RNA and RNA-protein complexes during most aspects of RNA metabolism. Although the vast majority of DExH/D proteins displays virtually no sequence-specificity when remodeling RNA complexes in vitro, the enzymes clearly distinguish between a large number of RNA and RNP complexes in a physiological context. It is unknown how this discrimination between potential substrates is achieved. Here we show one possible way by which a non-sequence specific DExH/D protein can discriminately remodel similar RNA complexes. We have measured in vitro the disassembly of model RNPs by two distinct DExH/D proteins, DED1 and NPH-II. Both enzymes displace the U1 snRNP from a tightly bound RNA in an active, ATP-dependent fashion. However, DED1 cannot actively displace the protein U1A from its binding site, whereas NPH-II can. The dissociation rate of U1A dictates the rate by which DED1 remodels RNA complexes with U1A bound. We further show that DED1 disassembles RNA complexes with slightly altered U1A binding sites at different rates, but only when U1A is bound to the RNA. These findings suggest that the "inability" to actively displace other proteins from RNA can provide non-sequence specific DExH/D proteins with the capacity to disassemble similar RNA complexes in a discriminatory fashion. In addition, our study illuminates possible mechanisms for protein displacement by DExH/D proteins.
机译:在RNA代谢的大多数方面,DExH / D蛋白催化NTP驱动的RNA和RNA-蛋白质复合物的重排。尽管在体外重塑RNA复合物时,绝大多数DExH / D蛋白几乎没有序列特异性,但在生理环境中,这些酶显然可以区分大量RNA和RNP复合物。尚不清楚如何实现潜在基材之间的区分。在这里,我们展示了一种非序列特异的DExH / D蛋白可以区分相似的RNA复合物的可能方法。我们已经在体外测量了两种不同的DExH / D蛋白DED1和NPH-II对模型RNP的分解。两种酶都以一种主动的,ATP依赖性的方式从紧密结合的RNA中置换出U1 snRNP。但是,DED1不能从其结合位点主动置换蛋白U1A,而NPH-II可以。 U1A的解离速率决定了DED1重塑结合U1A的RNA复合体的速率。我们进一步表明,DED1可以以不同的速率拆卸具有略微改变的U1A结合位点的RNA复合物,但仅当U1A与RNA结合时才如此。这些发现表明,“不能”主动地从RNA置换其他蛋白质可以提供非序列特异性DExH / D蛋白质,并具有以歧视性方式分解相似RNA复合物的能力。此外,我们的研究阐明了DExH / D蛋白质置换蛋白质的可能机制。

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