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核糖体谜题的解决方案:核糖体如何从41个相似的竞争者中挑选出正确的氨酰tRNA。

Solution of the ribosome riddle: how the ribosome selects the correct aminoacyl-tRNA out of 41 similar contestants.

作者信息

Nierhaus K H

机构信息

Max-Planck-Institut für Molekulare Genetik, Berlin, Germany.

出版信息

Mol Microbiol. 1993 Aug;9(4):661-9. doi: 10.1111/j.1365-2958.1993.tb01726.x.

Abstract

Three tRNA binding sites, the A, P and E sites, have been demonstrated on ribosomes of bacterial, archaebacterial and eukaryotic origin. In all these cases the first and the third site, the A and the E site, are allosterically coupled in the sense of a negative co-operativity. Therefore, the allosteric three-site model seems to be a generally valid description of the ribosomal elongation phase, where in a cycle of reactions the nascent peptide chain is prolonged by one amino acid. The molecular concept of the allosteric three-site model explains the astonishing ability of the ribosome to select the correct substrate out of a large number of very similar substrates, and it provides a framework within which the mechanisms of the elongation factors could be understood.

摘要

在细菌、古细菌和真核生物来源的核糖体上已证实存在三个tRNA结合位点,即A位点、P位点和E位点。在所有这些情况下,第一个和第三个位点,即A位点和E位点,在负协同性的意义上是变构偶联的。因此,变构三位点模型似乎是对核糖体延伸阶段的一个普遍有效的描述,在这个反应循环中,新生肽链每次延长一个氨基酸。变构三位点模型的分子概念解释了核糖体从大量非常相似的底物中选择正确底物的惊人能力,并提供了一个可以理解延伸因子机制的框架。

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