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延伸因子EF-Tu-GDP效应区域中的螺旋解旋。

Helix unwinding in the effector region of elongation factor EF-Tu-GDP.

作者信息

Polekhina G, Thirup S, Kjeldgaard M, Nissen P, Lippmann C, Nyborg J

机构信息

Institute of Molecular and Structural Biology, Aarhus University, Langelandsgade, Denmark.

出版信息

Structure. 1996 Oct 15;4(10):1141-51. doi: 10.1016/s0969-2126(96)00122-0.

Abstract

BACKGROUND

Elongation factor Tu (EF-Tu) in its GTP conformation is a carrier of aminoacylated tRNAs (aa-tRNAs) to the ribosomal A site during protein biosynthesis. The ribosome triggers GTP hydrolysis, resulting in the dissociation of EF-Tu-GDP from the ribosome. The affinity of EF-Tu for other molecules involved in this process, some of which are unknown, is regulated by two regions (Switch I and Switch II) that have different conformations in the GTP and GDP forms. The structure of the GDP form of EF-Tu is known only as a trypsin-modified fragment, which lacks the Switch I, or effector, domain. The aim of this work was to establish the overall structure of intact EF-Tu-GDP, in particular the structure of the effector domain.

RESULTS

The crystal structures of intact EF-Tu-GDP from Thermus aquaticus and Escherichia coli have been determined at resolutions of 2.7 A and 3.8 A, respectively. The structures confirm the domain orientation previously found in the structure of partially trypsin-digested EF-Tu-GDP. The structures of the effector region in T. aquaticus and E. coli EF-Tu-GDP are very similar. The C-terminal part of the effector region of EF-Tu-GDP is a beta hairpin; in EF-Tu-GTP, this region forms an alpha helix. This conformational change is not a consequence of crystal packing.

CONCLUSIONS

EF-Tu undergoes major conformational changes upon GTP hydrolysis. Unlike other GTP-binding proteins, EF-Tu exhibits a dramatic conformational change in the effector region, involving an unwinding of a small helix and the formation of a beta hairpin structure. This change is presumably involved in triggering the release of tRNA, and EF-Tu, from the ribosome.

摘要

背景

在蛋白质生物合成过程中,处于GTP构象的延伸因子Tu(EF-Tu)是氨酰化tRNA(aa-tRNA)转运至核糖体A位点的载体。核糖体触发GTP水解,导致EF-Tu-GDP从核糖体上解离。EF-Tu对该过程中涉及的其他分子(其中一些未知)的亲和力受两个区域(开关I和开关II)调节,这两个区域在GTP和GDP形式下具有不同构象。EF-Tu的GDP形式的结构仅作为胰蛋白酶修饰片段已知,该片段缺少开关I或效应结构域。这项工作的目的是确定完整的EF-Tu-GDP的整体结构,特别是效应结构域的结构。

结果

分别以2.7 Å和3.8 Å的分辨率测定了嗜热栖热菌和大肠杆菌完整的EF-Tu-GDP的晶体结构。这些结构证实了先前在部分胰蛋白酶消化的EF-Tu-GDP结构中发现的结构域取向。嗜热栖热菌和大肠杆菌EF-Tu-GDP中效应区域的结构非常相似。EF-Tu-GDP效应区域的C末端部分是一个β发夹结构;在EF-Tu-GTP中,该区域形成一个α螺旋。这种构象变化不是晶体堆积的结果。

结论

GTP水解后,EF-Tu会发生重大构象变化。与其他GTP结合蛋白不同,EF-Tu在效应区域表现出显著的构象变化,涉及一个小螺旋的解旋和β发夹结构的形成。这种变化可能参与触发tRNA和EF-Tu从核糖体上释放。

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