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氨酰化tRNA与EF-Tu-GTP的三元复合物。对一种键和一种折叠的识别。

The ternary complex of aminoacylated tRNA and EF-Tu-GTP. Recognition of a bond and a fold.

作者信息

Nissen P, Kjeldgaard M, Thirup S, Clark B F, Nyborg J

机构信息

Department of Molecular and Structural Biology, Aarhus University, Denmark.

出版信息

Biochimie. 1996;78(11-12):921-33. doi: 10.1016/s0300-9084(97)86714-4.

Abstract

The refined crystal structure of the ternary complex of yeast Phe-tRNAPhe, Thermus aquaticus elongation factor EF-Tu and the non-hydrolyzable GTP analog, GDPNP, reveals many details of the EF-Tu recognition of aminoacylated tRNA (aa-tRNA). EF-Tu-GTP recognizes the aminoacyl bond and one side of the backbone fold of the acceptor helix and has a high affinity for all ordinary elongator aa-tRNAs by binding to this aa-tRNA motif. Yet, the binding of deacylated tRNA, initiator tRNA, and selenocysteine-specific tRNA (tRNASec) is effectively discriminated against. Subtle rearrangements of the binding pocket may occur to optimize the fit to any side chain of the aminoacyl group and interactions with EF-Tu stabilize the 3'-aminoacyl isomer of aa-tRNA. A general complementarity is observed in the location of the binding sites in tRNA for synthetases and for EF-Tu. The complex formation is highly specific for the GTP-bound conformation of EF-Tu, which can explain the effects of various mutants.

摘要

酵母苯丙氨酰 - tRNAphe、嗜热栖热菌延伸因子EF - Tu与不可水解的GTP类似物GDPNP的三元复合物的精细晶体结构揭示了EF - Tu对氨酰化tRNA(aa - tRNA)识别的许多细节。EF - Tu - GTP识别氨酰键和受体螺旋主链折叠的一侧,并通过结合该aa - tRNA基序对所有普通延伸因子aa - tRNA具有高亲和力。然而,去氨酰化tRNA、起始tRNA和硒代半胱氨酸特异性tRNA(tRNASec)的结合被有效区分。结合口袋可能会发生细微重排,以优化与氨酰基任何侧链的契合,并且与EF - Tu的相互作用稳定了aa - tRNA的3'-氨酰异构体。在tRNA中合成酶和EF - Tu的结合位点位置观察到一般互补性。复合物的形成对EF - Tu的GTP结合构象具有高度特异性,这可以解释各种突变体的作用。

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