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抗生素结合诱导延伸因子Tu(EF-Tu)的构象变化。EF-Tu.GDP与奥多霉素复合物的晶体结构。

Conformational change of elongation factor Tu (EF-Tu) induced by antibiotic binding. Crystal structure of the complex between EF-Tu.GDP and aurodox.

作者信息

Vogeley L, Palm G J, Mesters J R, Hilgenfeld R

机构信息

Department of Structural Biology and Crystallography, Institute of Molecular Biotechnology, Beutenbergstrasse 11, D-07745 Jena, Germany.

出版信息

J Biol Chem. 2001 May 18;276(20):17149-55. doi: 10.1074/jbc.M100017200. Epub 2001 Jan 30.

Abstract

Aurodox is a member of the family of kirromycin antibiotics, which inhibit protein biosynthesis by binding to elongation factor Tu (EF-Tu). We have determined the crystal structure of the 1:1:1 complex of Thermus thermophilus EF-Tu with GDP and aurodox to 2.0-A resolution. During its catalytic cycle, EF-Tu adopts two strikingly different conformations depending on the nucleotide bound: the GDP form and the GTP form. In the present structure, a GTP complex-like conformation of EF-Tu is observed, although GDP is bound to the nucleotide-binding site. This is consistent with previous proposals that aurodox fixes EF-Tu on the ribosome by locking it in its GTP form. Binding of EF-Tu.GDP to aminoacyl-tRNA and mutually exclusive binding of kirromycin and elongation factor Ts to EF-Tu can be explained on the basis of the structure. For many previously observed mutations that provide resistance to kirromycin, it can now be understood how they prevent interaction with the antibiotic. An unexpected feature of the structure is the reorientation of the His-85 side chain toward the nucleotide-binding site. We propose that this residue stabilizes the transition state of GTP hydrolysis, explaining the acceleration of the reaction by kirromycin-type antibiotics.

摘要

奥罗多克斯是奇霉素抗生素家族的一员,它通过与延伸因子Tu(EF-Tu)结合来抑制蛋白质生物合成。我们已经确定了嗜热栖热菌EF-Tu与GDP和奥罗多克斯形成的1:1:1复合物的晶体结构,分辨率达到2.0埃。在其催化循环中,EF-Tu根据结合的核苷酸采取两种截然不同的构象:GDP形式和GTP形式。在目前的结构中,尽管GDP结合在核苷酸结合位点,但观察到EF-Tu呈现出类似GTP复合物的构象。这与之前的提议一致,即奥罗多克斯通过将EF-Tu锁定在其GTP形式而将其固定在核糖体上。基于该结构,可以解释EF-Tu.GDP与氨酰-tRNA的结合以及奇霉素和延伸因子Ts与EF-Tu的互斥结合。对于许多先前观察到的对奇霉素具有抗性的突变,现在可以理解它们是如何阻止与抗生素相互作用的。该结构的一个意外特征是His-85侧链向核苷酸结合位点的重新定向。我们提出该残基稳定了GTP水解的过渡态,解释了奇霉素类抗生素对反应的加速作用。

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