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透过镜子看核糖体。

The ribosome through the looking glass.

作者信息

Wilson Daniel N, Nierhaus Knud H

机构信息

Max-Planck-Institut für molekulare Genetik, Ihnestrasse 73, 14195 Berlin, Germany.

出版信息

Angew Chem Int Ed Engl. 2003 Aug 4;42(30):3464-86. doi: 10.1002/anie.200200544.

Abstract

For almost 20 years crystallographers have sought to solve the structure of the ribosome, the largest and most complicated RNA-protein complex in the cell. All ribosomes are composed of a large and small subunit which for the humble bacterial ribosome comprise more than 4000 ribonucleotides, 54 different proteins, and have a molecular mass totaling over 2.5 million Daltons. The past few years have seen the resolution of structures at the atomic level for both large and small subunits and of the complete 70S ribosome from Thermus thermophilus at a resolution of 5.5-A. Soaking of small ligands (such as antibiotics, substrate analogues, and small translational factors) into the crystals of the subunits has revolutionized our understanding of the central functions of the ribosome. Coupled with the power of cryo-electron microscopic studies of translation complexes, a collection of snap-shots is accumulating, which can be assembled to create a likely motion picture of the bacterial ribosome during translation. Recent analyses show yeast ribosomes have a remarkable structural similarity to bacterial ribosomes. This Review aims to follow the bacterial ribosome through each sequential "frame" of the translation cycle, emphasizing at each point the features that are found in all organisms.

摘要

近20年来,晶体学家一直试图解析核糖体的结构,核糖体是细胞中最大且最复杂的RNA-蛋白质复合物。所有核糖体均由一个大亚基和一个小亚基组成,即使是简单的细菌核糖体,也包含4000多个核糖核苷酸、54种不同的蛋白质,其分子量总计超过250万道尔顿。在过去几年中,已解析出了细菌核糖体大亚基和小亚基的原子水平结构,以及嗜热栖热菌完整70S核糖体5.5埃分辨率的结构。将小配体(如抗生素、底物类似物和小翻译因子)浸泡到亚基晶体中,彻底改变了我们对核糖体核心功能的理解。结合对翻译复合物进行冷冻电子显微镜研究的强大功能,一系列的瞬时图像正在积累,这些图像可以整合起来,构建出细菌核糖体在翻译过程中可能的动态影像。最近的分析表明,酵母核糖体与细菌核糖体在结构上有显著的相似性。本综述旨在跟踪细菌核糖体在翻译循环的每个连续“帧”中的情况,在每一点上强调所有生物体中都存在的特征。

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