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首页> 外文期刊>Journal of Molecular Biology >Directed Mutagenesis Identifies Amino Acid Residues Involved in Elongation Factor Tu Binding to yeast Phe-tRNA(Phe).
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Directed Mutagenesis Identifies Amino Acid Residues Involved in Elongation Factor Tu Binding to yeast Phe-tRNA(Phe).

机译:定向诱变鉴定涉及延伸因子Tu结合到酵母Phe-tRNA(Phe)的氨基酸残基。

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摘要

The co-crystal structure of Thermus aquaticus elongation factor Tu.guanosine 5'- [beta,gamma-imido]triphosphate (EF-Tu.GDPNP) bound to yeast Phe-tRNA(Phe) reveals that EF-Tu interacts with the tRNA body primarily through contacts with the phosphodiester backbone. Twenty amino acids in the tRNA binding cleft of Thermus Thermophilus EF-Tu were each mutated to structurally conservative alternatives and the affinities of the mutant proteins to yeast Phe-tRNA(Phe) determined. Eleven of the 20 mutations reduced the binding affinity from fourfold to >100-fold, while the remaining ten had no effect. The thermodynamically important residues were spread over the entire tRNA binding interface, but were concentrated in the region which contacts the tRNA T-stem. Most of the data could be reconciled by considering the crystal structures of both free EF-Tu.GTP and the ternary complex and allowing for small (1.0 A) movements in the amino acid side-chains. Thus, despite the non-physiological crystallization conditions and crystal lattice interactions, the crystal structures reflect the biochemically relevant interaction in solution.
机译:与酵母Phe-tRNA(Phe)结合的水生栖热菌延伸因子土鸟嘌呤5'-β,γ-亚氨基三磷酸(EF-Tu.GDPNP)的共晶体结构表明,EF-Tu与tRNA体相互作用主要通过与磷酸二酯主链接触。嗜热栖热菌EF-Tu的tRNA结合裂隙中的20个氨基酸各自突变为结构保守的替代物,并确定了突变蛋白对酵母Phe-tRNA(Phe)的亲和力。 20个突变中的11个将结合亲和力从4倍降低到> 100倍,而其余10个没有作用。具有热力学重要性的残基分布在整个tRNA结合界面上,但集中在与tRNA T-茎接触的区域。通过考虑游离的EF-Tu.GTP和三元复合物的晶体结构,并允许氨基酸侧链中的小(1.0 A)运动,可以调和大多数数据。因此,尽管存在非生理结晶条件和晶格相互作用,但晶体结构反映了溶液中生物化学相关的相互作用。

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