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Structural variety of arginine-rich RNA-binding peptides.

机译:富含精氨酸的RNA结合肽的结构变化。

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摘要

Arginine-rich domains are used by a variety of RNA-binding proteins to recognize specific RNA hairpins. It has been shown previously that a 17-aa arginine-rich peptide from the human immunodeficiency virus Rev protein binds specifically to its RNA site when the peptide is in an alpha-helical conformation. Here we show that related peptides from splicing factors, viral coat proteins, and bacteriophage antiterminators (the N proteins) also have propensities to form alpha-helices and that the N peptides require helical conformations to bind to their cognate RNAs. In contrast, introducing proline mutations into the arginine-rich domain of the human immunodeficiency virus Tat protein abolishes its potential to form an alpha-helix but does not affect RNA-binding affinity in vitro or in vivo. Based on results from several peptide-RNA model systems, we suggest that helical peptides may be used to recognize RNA structures having particularly wide major grooves, such as those found near loops or large bulges, and that nonhelical or extended peptides may be used to recognize less accessible grooves.
机译:各种RNA结合蛋白可使用富含精氨酸的域来识别特定的RNA发夹。先前已显示,当人源免疫缺陷病毒Rev蛋白中的一个17-aa精氨酸富集肽处于α-螺旋构象时,它会特异性地与其RNA位点结合。在这里,我们显示了来自剪接因子,病毒外壳蛋白和噬菌体抗终止剂(N蛋白)的相关肽也具有形成α螺旋的倾向,并且N肽需要螺旋构象才能与其同源RNA结合。相反,将脯氨酸突变引入人免疫缺陷病毒Tat蛋白的富含精氨酸的域消除了其形成α-螺旋的潜力,但在体外或体内均不影响RNA结合亲和力。基于几种肽RNA模型系统的结果,我们建议螺旋肽可用于识别具有特别宽的主要凹槽的RNA结构,例如在环附近或大凸起处发现的那些结构,并且非螺旋或延伸的肽可用于识别难以接近的凹槽。

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