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构建延伸因子Tu与核糖体相互作用的模型

Toward a model for the interaction between elongation factor Tu and the ribosome.

作者信息

Weijland A, Parmeggiani A

机构信息

SDI n. 61840 du Centre National de la Recherche Scientifique, Laboratoire de Biochimie, Ecole Polytechnique, Palaiseau, France.

出版信息

Science. 1993 Feb 26;259(5099):1311-4. doi: 10.1126/science.8446899.

Abstract

In the elongation cycle of bacterial protein synthesis the interaction between elongation factor-Tu (EF-Tu).guanosine triphosphate (GTP), aminoacyl-transfer RNA (aa-tRNA), and messenger RNA-programmed ribosomes is associated with the hydrolysis of GTP. This interaction determines the selection of the proper aa-tRNA for incorporation into the polypeptide. In the canonical scheme, one molecule of GTP is hydrolyzed in the EF-Tu-dependent binding of aa-tRNA to the ribosome, and a second molecule is hydrolyzed in the elongation factor-G (EF-G)-mediated translocation of the polypeptide from the ribosomal A site to the P site. Substitution of Asp138 with Asn in EF-Tu changed the substrate specificity from GTP to xanthosine triphosphate and demonstrated that the EF-Tu-mediated reactions involved the hydrolysis of two nucleotide triphosphates for each Phe incorporated. This stoichiometry of two is associated with the binding of the correct aa-tRNA to the ribosome.

摘要

在细菌蛋白质合成的延伸循环中,延伸因子-Tu(EF-Tu)、鸟苷三磷酸(GTP)、氨酰基转移RNA(aa-tRNA)和信使RNA编程核糖体之间的相互作用与GTP的水解相关。这种相互作用决定了用于掺入多肽的合适aa-tRNA的选择。在经典模式中,一分子GTP在aa-tRNA与核糖体的EF-Tu依赖性结合中被水解,第二分子GTP在延伸因子-G(EF-G)介导的多肽从核糖体A位点向P位点的转位中被水解。EF-Tu中第138位的天冬氨酸被天冬酰胺取代,将底物特异性从GTP改变为黄苷三磷酸,并证明EF-Tu介导的反应对于每个掺入的苯丙氨酸涉及两个三磷酸核苷酸的水解。这种二的化学计量与正确的aa-tRNA与核糖体的结合相关。

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