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Molecular basis of double-stranded RNA-protein interactions: structure of a dsRNA-binding domain complexed with dsRNA.

机译:双链RNA与蛋白质相互作用的分子基础:与dsRNA复合的dsRNA结合结构域的结构。

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摘要

Protein interactions with double-stranded RNA (dsRNA) are critical for many cell processes; however, in contrast to protein-dsDNA interactions, surprisingly little is known about the molecular basis of protein-dsRNA interactions. A large and diverse class of proteins that bind dsRNA do so by utilizing an approximately 70 amino acid motif referred to as the dsRNA-binding domain (dsRBD). We have determined a 1.9 A resolution crystal structure of the second dsRBD of Xenopus laevis RNA-binding protein A complexed with dsRNA. The structure shows that the protein spans 16 bp of dsRNA, interacting with two successive minor grooves and across the intervening major groove on one face of a primarily A-form RNA helix. The nature of these interactions explains dsRBD specificity for dsRNA (over ssRNA or dsDNA) and the apparent lack of sequence specificity. Interestingly, the dsRBD fold resembles a portion of the conserved core structure of a family of polynucleotidyl transferases that includes RuvC, MuA transposase, retroviral integrase and RNase H. Structural comparisons of the dsRBD-dsRNA complex and models proposed for polynucleotidyl transferase-nucleic acid complexes suggest that similarities in nucleic acid binding also exist between these families of proteins.
机译:蛋白质与双链RNA(dsRNA)的相互作用对于许多细胞过程至关重要。然而,与蛋白质-dsDNA相互作用相反,关于蛋白质-dsRNA相互作用的分子基础知之甚少。结合dsRNA的一大类蛋白质通过利用称为dsRNA结合域(dsRBD)的约70个氨基酸的基序来实现。我们确定了与dsRNA复合的非洲爪蟾RNA结合蛋白A的第二个dsRBD的1.9 A解析晶体结构。该结构显示该蛋白质跨度为dsRNA的16 bp,与两个连续的次要凹槽相互作用,并跨越主要A型RNA螺旋的一个面上的居间主要凹槽。这些相互作用的本质解释了dsRBD对dsRNA的特异性(超过ssRNA或dsDNA)以及明显缺乏序列特异性。有趣的是,dsRBD折叠类似于多核苷酸转移酶家族保守核心结构的一部分,包括RuvC,MuA转座酶,逆转录病毒整合酶和RNaseH。dsRBD-dsRNA复合物的结构比较和为多核苷酸转移酶-核酸复合物提出的模型这表明这些蛋白质家族之间也存在核酸结合的相似性。

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