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Toward a molecular understanding of RNA remodeling by DEAD-box proteins

机译:寻求分子对DEAD-box蛋白重塑RNA的理解

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DEAD-box proteins are superfamily 2 helicases that function in all aspects of RNA metabolism. They employ ATP binding and hydrolysis to generate tight, yet regulated RNA binding, which is used to unwind short RNA helices non-processively and promote structural transitions of RNA and RNA-protein substrates. In the last few years, substantial progress has been made toward a detailed, quantitative understanding of the structural and biochemical properties of DEAD-box proteins. Concurrently, progress has been made toward a physical understanding of the RNA rearrangements and folding steps that are accelerated by DEAD-box proteins in model systems. Here, we review the recent progress on both of these fronts, focusing on the mitochondrial DEAD-box proteins Mss116 and CYT-19 and their mechanisms in promoting the splicing of group I and group II introns.
机译:DEAD-box蛋白是超家族2解旋酶,在RNA代谢的所有方面均起作用。它们利用ATP结合和水解来产生紧密而受调节的RNA结合,该结合可无损地解开短RNA螺旋并促进RNA和RNA蛋白质底物的结构转变。在过去的几年中,在详细,定量地了解DEAD-box蛋白的结构和生化特性方面已经取得了实质性进展。同时,在物理上理解由模型系统中的DEAD-box蛋白加速的RNA重排和折叠步骤方面已取得进展。在这里,我们回顾这两个方面的最新进展,重点是线粒体DEAD框蛋白Mss116和CYT-19及其在促进I组和II组内含子剪接中的作用机理。

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