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Protein displacement by DExH/D 'RNA helicases' without duplex unwinding

机译:通过DExH / D“ RNA解旋酶”置换蛋白质而无需双链展开

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Members of the DExH/D superfamily of nucleic acid-activated nucleotide triphosphatases are essential for virtually all aspects of RNA metabolism, including pre-messenger RNA splicing, RNA interference, translation, and nucleocytoplasmic trafficking. Physiological substrates for these enzymes are thought to be regions of double-stranded RNA, because several DExH/D proteins catalyze strand separation in vitro. These "RNA helicases" can also disrupt RNA-protein interactions, but it is unclear whether this activity is coupled to duplex unwinding. Here we demonstrate that two unrelated DExH/D proteins catalyze protein displacement independently of duplex unwinding. Therefore, the essential functions of DExH/D proteins are not confined to RNA duplexes but can be exerted on a wide range of ribonucleoprotein substrates.
机译:核酸激活核苷酸三磷酸酶DExH / D超家族的成员对于RNA代谢的几乎所有方面都是必不可少的,包括信使前RNA剪接,RNA干扰,翻译和核质运输。这些酶的生理底物被认为是双链RNA的区域,因为几种DExH / D蛋白在体外催化链分离。这些“ RNA解旋酶”也可以破坏RNA-蛋白质的相互作用,但是尚不清楚这种活性是否与双链解偶联有关。在这里,我们证明了两个不相关的DExH / D蛋白可独立于双链体展开而催化蛋白置换。因此,DExH / D蛋白的基本功能不限于RNA双链体,而是可以在多种核糖核蛋白底物上发挥作用。

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