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

机译:氨基酰化的tRNA和EF-Tu-GTP的三元复合物。识别键和折叠

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摘要

The refined crystal structure of the ternary complex of yeast Phe-tRNA~(Phe), 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 (tRNA~(Sec)) 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.
机译:酵母Phe-tRNA〜(Phe),水生栖热菌延伸因子EF-Tu和不可水解的GTP类似物GDPNP的三元复合物的精制晶体结构揭示了EF-Tu识别氨基酰化tRNA(aa- tRNA)。 EF-Tu-GTP识别受体螺旋的氨基酰基键和主链折叠的一侧,并通过与该aa-tRNA基序结合而对所有普通的延伸aa-tRNA具有高亲和力。然而,脱酰基tRNA,起始tRNA和硒代半胱氨酸特异性tRNA(tRNA〜(Sec))的结合被有效地区分了。可能发生结合口袋的细微重排,以优化与氨酰基的任何侧链的拟合,并且与EF-Tu的相互作用稳定了aa-tRNA的3'-氨酰基异构体。在用于合成酶和EF-Tu的tRNA结合位点的位置中观察到一般的互补性。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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