Leibundgut Marc, Frick Christian, Thanbichler Martin, Böck August, Ban Nenad
Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule Zürich, Zürich, Switzerland.
EMBO J. 2005 Jan 12;24(1):11-22. doi: 10.1038/sj.emboj.7600505. Epub 2004 Dec 23.
In all three kingdoms of life, SelB is a specialized translation elongation factor responsible for the cotranslational incorporation of selenocysteine into proteins by recoding of a UGA stop codon in the presence of a downstream mRNA hairpin loop. Here, we present the X-ray structures of SelB from the archaeon Methanococcus maripaludis in the apo-, GDP- and GppNHp-bound form and use mutational analysis to investigate the role of individual amino acids in its aminoacyl-binding pocket. All three SelB structures reveal an EF-Tu:GTP-like domain arrangement. Upon binding of the GTP analogue GppNHp, a conformational change of the Switch 2 region in the GTPase domain leads to the exposure of SelB residues involved in clamping the 5' phosphate of the tRNA. A conserved extended loop in domain III of SelB may be responsible for specific interactions with tRNA(Sec) and act as a ruler for measuring the extra long acceptor arm. Domain IV of SelB adopts a beta barrel fold and is flexibly tethered to domain III. The overall domain arrangement of SelB resembles a 'chalice' observed so far only for initiation factor IF2/eIF5B. In our model of SelB bound to the ribosome, domain IV points towards the 3' mRNA entrance cleft ready to interact with the downstream secondary structure element.
在生命的三个王国中,SelB是一种特殊的翻译延伸因子,负责在下游mRNA发夹环存在的情况下,通过对UGA终止密码子进行重新编码,将硒代半胱氨酸共翻译掺入蛋白质中。在这里,我们展示了来自嗜盐甲烷球菌的SelB在无配体、结合GDP和结合GppNHp形式下的X射线结构,并使用突变分析来研究其氨酰基结合口袋中单个氨基酸的作用。所有三种SelB结构都揭示了一种类似于EF-Tu:GTP的结构域排列。在结合GTP类似物GppNHp后,GTPase结构域中开关2区域的构象变化导致参与夹住tRNA 5'磷酸基团的SelB残基暴露。SelB结构域III中一个保守的延伸环可能负责与tRNA(Sec)的特异性相互作用,并作为测量超长受体臂的尺子。SelB的结构域IV采用β桶折叠,并灵活地连接到结构域III。SelB的整体结构域排列类似于迄今为止仅在起始因子IF2/eIF5B中观察到的“圣杯”。在我们的SelB与核糖体结合的模型中,结构域IV指向3'mRNA入口裂隙,准备与下游二级结构元件相互作用。