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tRNA 3'端通过肽基转移酶中心的移动及其受抗生素的抑制作用。

Movement of the 3'-end of tRNA through the peptidyl transferase centre and its inhibition by antibiotics.

作者信息

Kirillov S, Porse B T, Vester B, Woolley P, Garrett R A

机构信息

RNA Regulation Centre, Institute of Molecular Biology, Copenhagen University, Denmark.

出版信息

FEBS Lett. 1997 Apr 14;406(3):223-33. doi: 10.1016/s0014-5793(97)00261-5.

Abstract

Determining how antibiotics inhibit ribosomal activity requires a detailed understanding of the interactions and relative movement of tRNA, mRNA and the ribosome. Recent models for the formation of hybrid tRNA binding sites during the elongation cycle have provided a basis for re-evaluating earlier experimental data and, especially, those relevant to substrate movements through the peptidyl transferase centre. With the exception of deacylated tRNA, which binds at the E-site, ribosomal interactions of the 3'-ends of the tRNA substrates generate only a small part of the total free energy of tRNA-ribosome binding. Nevertheless, these relatively weak interactions determine the unidirectional movement of tRNAs through the ribosome and, moreover, they appear to be particularly susceptible to perturbation by antibiotics. Here we summarise current ideas relating particularly to the movement of the 3'-ends of tRNA through the ribosome and consider possible inhibitory mechanisms of the peptidyl transferase antibiotics.

摘要

确定抗生素如何抑制核糖体活性需要详细了解转运RNA(tRNA)、信使RNA(mRNA)和核糖体之间的相互作用及相对运动。近期关于延伸循环中杂交tRNA结合位点形成的模型为重新评估早期实验数据,特别是那些与底物通过肽基转移酶中心的运动相关的数据,提供了基础。除了在E位点结合的脱酰基tRNA外,tRNA底物3'端与核糖体的相互作用仅产生tRNA - 核糖体结合总自由能的一小部分。然而,这些相对较弱的相互作用决定了tRNA在核糖体中的单向运动,而且它们似乎特别容易受到抗生素的干扰。在此,我们总结了当前特别与tRNA 3'端在核糖体中的运动相关的观点,并考虑了肽基转移酶抗生素可能的抑制机制。

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