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Elongation in translation as a dynamic interaction among the ribosome, tRNA, and elongation factors EF-G and EF-Tu

机译:翻译中的延伸是核糖体,tRNA和延伸因子EF-G和EF-Tu之间的动态相互作用

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摘要

The ribosome is a complex macromolecular machine that translates the message encoded in the messenger RNA and synthesizes polypeptides by linking the individual amino acids carried by the cognate transfer RNAs (tRNAs). The protein elongation cycle, during which the tRNAs traverse the ribosome in a coordinated manner along a path of more than 100 A, is facilitated by large-scale rearrangements of the ribosome. These rearrangements go hand in hand with conformational changes of tRNA as well as elongation factors EF-Tu and EF-G - GTPases that catalyze tRNA delivery and translocation, respectively. This review focuses on the structural data related to the dynamics of the ribosomal machinery, which are the basis, in conjunction with existing biochemical, kinetic, and fluorescence resonance energy transfer data, of our knowledge of the decoding and translocation steps of protein elongation,
机译:核糖体是一个复杂的大分子机器,可以翻译信使RNA中编码的信息,并通过连接同源转移RNA(tRNA)携带的各个氨基酸来合成多肽。核糖体的大规模重排促进了蛋白质延长周期,在此过程中,tRNA以协同方式沿着大于100 A的路径穿过核糖体。这些重排与tRNA的构象变化以及分别催化tRNA传递和易位的延伸因子EF-Tu和EF-G-GTPases紧密相关。这篇评论着重于与核糖体机制动力学相关的结构数据,这些数据与现有的生化,动力学和荧光共振能量转移数据一起,是我们对蛋白质延伸的解码和易位步骤的认识的基础

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