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对延伸因子SelB串联翼状螺旋基序中分子开关的结构洞察。

Structural insight into a molecular switch in tandem winged-helix motifs from elongation factor SelB.

作者信息

Soler Nicolas, Fourmy Dominique, Yoshizawa Satoko

机构信息

Laboratoire de Chimie et Biologie Structurales, ICSN-CNRS, 1 ave de la terrasse, 91190 Gif-sur-Yvette, France.

出版信息

J Mol Biol. 2007 Jul 20;370(4):728-41. doi: 10.1016/j.jmb.2007.05.001. Epub 2007 May 10.

Abstract

Elongation factor SelB is responsible for co-translational incorporation of selenocysteine (Sec) into proteins. The UGA stop codon is recoded as a Sec codon in the presence of a downstream mRNA hairpin. In prokaryotes, in addition to the EF-Tu-like N-terminal domains, a C-terminal extension containing four tandem winged-helix motifs (WH1-4) recognizes the mRNA hairpin. The 2.3-A resolution crystal structure of the Escherichia coli WH3/4 domains bound to mRNA with mutagenesis data reveal that the two WH motifs use the same structural elements to bind RNA. The structure together with the 2.6-A resolution structure of the WH1-4 domains from Moorella thermoacetica bound to RNA revealed that a salt bridge connecting WH2 to WH3 modules is disrupted upon mRNA binding. The results provide a structural basis for the molecular switch that may allow communication between tRNA and mRNA binding sites and illustrate how RNA acts as an activator of the switch. The structures show that tandem WH motifs not only provide an excellent scaffold for RNA binding but can also have an active role in the function of protein-RNA complexes.

摘要

延伸因子SelB负责将硒代半胱氨酸(Sec)共翻译掺入蛋白质中。在下游mRNA发夹结构存在的情况下,UGA终止密码子被重新编码为Sec密码子。在原核生物中,除了类似EF-Tu的N端结构域外,包含四个串联翼状螺旋基序(WH1-4)的C端延伸结构域识别mRNA发夹结构。大肠杆菌WH3/4结构域与mRNA结合的2.3埃分辨率晶体结构及诱变数据表明,两个WH基序利用相同的结构元件结合RNA。该结构与嗜热栖热放线菌WH1-4结构域与RNA结合的2.6埃分辨率结构一起表明,连接WH2和WH3模块的盐桥在mRNA结合时被破坏。这些结果为可能允许tRNA和mRNA结合位点之间进行通信的分子开关提供了结构基础,并说明了RNA如何作为开关的激活剂。这些结构表明,串联WH基序不仅为RNA结合提供了一个极好的支架,而且在蛋白质-RNA复合物的功能中也可以发挥积极作用。

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