易位中的核糖体结构动力学:核糖体RNA的另一个功能角色。

IF 7.2 2区 生物学 Q1 BIOPHYSICS
Harry F Noller, Laura Lancaster, Srividya Mohan, Jie Zhou
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引用次数: 33

摘要

核糖体是重要的核糖-核蛋白复合物,在所有生命形式中负责蛋白质合成。它们在传递RNA介导的机制下聚合信使RNA中由核苷酸序列编程的多肽链。核糖体领域最具挑战性的问题之一是了解蛋白质合成延伸期mRNA和tRNA耦合易位的机制。近年来,结构、生物物理和生化研究的结果提供了广泛的证据,表明易位是基于核糖体本身的结构动力学。详细的结构分析表明,核糖体动力学,如氨基酰基trna选择和肽键形成的催化,是由核糖体RNA的特性实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ribosome structural dynamics in translocation: yet another functional role for ribosomal RNA.

Ribosomes are remarkable ribonucleoprotein complexes that are responsible for protein synthesis in all forms of life. They polymerize polypeptide chains programmed by nucleotide sequences in messenger RNA in a mechanism mediated by transfer RNA. One of the most challenging problems in the ribosome field is to understand the mechanism of coupled translocation of mRNA and tRNA during the elongation phase of protein synthesis. In recent years, the results of structural, biophysical and biochemical studies have provided extensive evidence that translocation is based on the structural dynamics of the ribosome itself. Detailed structural analysis has shown that ribosome dynamics, like aminoacyl-tRNA selection and catalysis of peptide bond formation, is made possible by the properties of ribosomal RNA.

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来源期刊
Quarterly Reviews of Biophysics
Quarterly Reviews of Biophysics 生物-生物物理
CiteScore
12.90
自引率
1.60%
发文量
16
期刊介绍: Quarterly Reviews of Biophysics covers the field of experimental and computational biophysics. Experimental biophysics span across different physics-based measurements such as optical microscopy, super-resolution imaging, electron microscopy, X-ray and neutron diffraction, spectroscopy, calorimetry, thermodynamics and their integrated uses. Computational biophysics includes theory, simulations, bioinformatics and system analysis. These biophysical methodologies are used to discover the structure, function and physiology of biological systems in varying complexities from cells, organelles, membranes, protein-nucleic acid complexes, molecular machines to molecules. The majority of reviews published are invited from authors who have made significant contributions to the field, who give critical, readable and sometimes controversial accounts of recent progress and problems in their specialty. The journal has long-standing, worldwide reputation, demonstrated by its high ranking in the ISI Science Citation Index, as a forum for general and specialized communication between biophysicists working in different areas. Thematic issues are occasionally published.
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