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弯曲的α-螺旋对RNA的识别调控噬菌体λ中的转录抗终止。

RNA recognition by a bent alpha-helix regulates transcriptional antitermination in phage lambda.

作者信息

Su L, Radek J T, Hallenga K, Hermanto P, Chan G, Labeots L A, Weiss M A

机构信息

Department of Biochemistry & Molecular Biology, University of Chicago, Chicago, Illinois 60637-5419, USA.

出版信息

Biochemistry. 1997 Oct 21;36(42):12722-32. doi: 10.1021/bi971408k.

Abstract

A novel RNA recognition motif is characterized in an arginine-rich peptide. The motif, derived from lambda transcriptional antitermination protein N, regulates an RNA-directed genetic switch. Its characterization by multidimensional nuclear magnetic resonance (NMR) demonstrates specific RNA-dependent folding of N- and C-terminal recognition helices separated by a central bend. The biological importance of the bent alpha-helix is demonstrated by mutagenesis: binding is blocked by substitutions in the N peptide or its target (the boxB RNA hairpin) associated in vivo with loss of transcriptional antitermination activity. Although arginine side chains are essential, the peptide is also anchored to boxB by specific nonpolar contacts. An alanine in the N-terminal helix docks in the major groove of the RNA stem whereas a tryptophan in the C-terminal helix stacks against a purine in the RNA loop. At these positions all 19 possible amino acid substitutions have been constructed by peptide synthesis; each impairs binding to boxB. The pattern of allowed and disallowed substitutions is in accord with the results of random-cassette mutagenesis in vivo. The helix-bend-helix motif rationalizes genetic analysis of N-dependent transcriptional antitermination and extends the structural repertoire of arginine-rich domains observed among mammalian immunodeficiency viruses.

摘要

一种新型RNA识别基序在富含精氨酸的肽中得到表征。该基序源自λ转录抗终止蛋白N,可调节一种RNA导向的基因开关。通过多维核磁共振(NMR)对其进行表征,结果表明由中央弯曲隔开的N端和C端识别螺旋存在特定的RNA依赖性折叠。诱变实验证明了弯曲α螺旋的生物学重要性:N肽或其靶标(boxB RNA发夹结构)中的取代会阻断结合,在体内这与转录抗终止活性的丧失相关。虽然精氨酸侧链至关重要,但该肽也通过特定的非极性接触锚定在boxB上。N端螺旋中的一个丙氨酸对接在RNA茎的大沟中,而C端螺旋中的一个色氨酸则与RNA环中的一个嘌呤堆积。在这些位置,通过肽合成构建了所有19种可能的氨基酸取代;每一种都损害了与boxB的结合。允许和不允许的取代模式与体内随机盒式诱变的结果一致。螺旋-弯曲-螺旋基序使对N依赖性转录抗终止的遗传分析合理化,并扩展了在哺乳动物免疫缺陷病毒中观察到的富含精氨酸结构域的结构库。

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