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Structure of the dsRNA binding domain of E. coli RNase III.

机译:大肠杆菌RNA酶III的dsRNA结合结构域的结构。

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摘要

The double-stranded RNA binding domain (dsRBD) is a approximately 70 residue motif found in a variety of modular proteins exhibiting diverse functions, yet always in association with dsRNA. We report here the structure of the dsRBD from RNase III, an enzyme present in most, perhaps all, living cells. It is involved in processing transcripts, such as rRNA precursors, by cleavage at short hairpin sequences. The RNase III protein consists of two modules, a approximately 150 residue N-terminal catalytic domain and a approximately 70 residue C-terminal recognition module, homologous with other dsRBDs. The structure of the dsRBD expressed in Escherichia coli has been investigated by homonuclear NMR techniques and solved with the aid of a novel calculation strategy. It was found to have an alpha-beta-beta-beta-alpha topology in which a three-stranded anti-parallel beta-sheet packs on one side against the two helices. Examination of 44 aligned dsRBD sequences reveals several conserved, positively charged residues. These residues map to the N-terminus of the second helix and a nearby loop, leading to a model for the possible contacts between the domain and dsRNA.
机译:双链RNA结合结构域(dsRBD)是存在于多种模块化蛋白质中的约70个残基基序,这些蛋白质表现出多种功能,但始终与dsRNA结合。我们在这里报告了来自RNase III的dsRBD的结构,这种酶存在于大多数(也许是全部)活细胞中。它参与通过短发夹序列的切割来加工转录本,例如rRNA前体。 RNase III蛋白由两个模块组成,一个约150个残基的N末端催化域和一个约70个残基的C末端识别模块,与其他dsRBD同源。已经通过同核NMR技术研究了在大肠杆菌中表达的dsRBD的结构,并借助一种新颖的计算策略对其进行了解析。发现具有α-β-β-β-α拓扑,其中三链反平行β-折叠在一侧相对于两个螺旋堆积。检查44个比对的dsRBD序列,发现几个保守的,带正电荷的残基。这些残基映射到第二个螺旋的N末端和附近的一个环,从而导致该结构域与dsRNA之间可能接触的模型。

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