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核糖体的三维电子冷冻显微镜技术。

Three-dimensional electron cryomicroscopy of ribosomes.

作者信息

Stark Holger

机构信息

Max-Planck-Institute for Biophysical Chemistry, Am Fassberg 11, 37077 Göttingen, Germany.

出版信息

Curr Protein Pept Sci. 2002 Feb;3(1):79-91. doi: 10.2174/1389203023380873.

Abstract

Single particle electron cryomicroscopy is nowadays routinely used to generate three-dimensional structural information of ribosomal complexes without the need of crystallization. A large number of structures of functional important ribosomal complexes have thus been determined using this technique. In E. coli 70S ribosomes all three tRNA binding sites could be localized. The ternary complex of EF-TutRNAGTP that delivers the tRNA to the ribosome was directly visualized in a ribosomal complex blocked by the antibiotic kirromycin. Three different functional states of translocation have been studied and the respective EF-G binding sites have been mapped. The level of resolution achievable with electron cryomicroscopy allows conformational changes in the domain structures of elongation factors to be modelled in terms of rigid body movements. Structural information on eukaryotic ribosomes is also available for yeast and mammalian 80S ribosomes. The structural differences between rabbit 80S and E. coli 70S ribosomes could be interpreted in terms of ribosomal RNA expansion segments in the 18S and 23S RNA. The EF-G homologue EF2 was mapped analysing the structure of an 80SEF2sodarin complex and most recently the binding of a hepatitis C virus IRES element to a yeast 40S subunit has been studied. The first electron cryomicroscopical 3D reconstructions have further been used to overcome the initial phasing problems in X-ray crystallographic studies of the ribosome facilitating structure determination of the recent atomic resolution structures of the 30S and 50S ribosomal subunits. In turn, the knowledge of the atomic structure of the ribosome makes detailed interpretations of cryo-EM maps possible at approximately 20 A resolution.

摘要

如今,单颗粒电子冷冻显微镜技术常用于在无需结晶的情况下生成核糖体复合物的三维结构信息。因此,利用该技术已确定了大量具有功能重要性的核糖体复合物的结构。在大肠杆菌70S核糖体中,所有三个tRNA结合位点都能被定位。将tRNA递送至核糖体的EF-Tu·tRNA·GTP三元复合物在被抗生素奇霉素阻断的核糖体复合物中被直接观察到。已经研究了转位的三种不同功能状态,并绘制了相应的EF-G结合位点。电子冷冻显微镜可达到的分辨率水平使得能够根据刚体运动对延伸因子结构域结构中的构象变化进行建模。关于真核生物核糖体的结构信息也可用于酵母和哺乳动物的80S核糖体。兔80S核糖体和大肠杆菌70S核糖体之间的结构差异可以根据18S和23S RNA中的核糖体RNA扩展片段来解释。通过分析80S·EF2·嗜皮菌毒素复合物的结构对EF-G同源物EF2进行了定位,最近还研究了丙型肝炎病毒内部核糖体进入位点元件与酵母40S亚基的结合。最初的电子冷冻显微镜三维重建进一步被用于克服核糖体X射线晶体学研究中的初始相位问题,促进了30S和50S核糖体亚基最近原子分辨率结构的结构测定。反过来,核糖体原子结构的知识使得在约20埃分辨率下对冷冻电镜图谱进行详细解释成为可能。

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