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大肠杆菌30S核糖体亚基的组装揭示了16S rRNA结构域的蛋白质依赖性折叠。

Assembly of the Escherichia coli 30S ribosomal subunit reveals protein-dependent folding of the 16S rRNA domains.

作者信息

Mandiyan V, Tumminia S J, Wall J S, Hainfeld J F, Boublik M

机构信息

Roche Institute of Molecular Biology, Roche Research Center, Nutley, NJ 07110.

出版信息

Proc Natl Acad Sci U S A. 1991 Sep 15;88(18):8174-8. doi: 10.1073/pnas.88.18.8174.

Abstract

Protein-nucleic acid interactions involved in the assembly process of the Escherichia coli 30S ribosomal subunit were quantitatively analyzed by high-resolution scanning transmission electron microscopy. The in vitro reconstituted ribonucleoprotein (core) particles were characterized by their morphology, mass, and radii of gyration. During the assembly of the 30S subunit, the 16S rRNA underwent significant conformational changes that were governed by the cooperative interactions of the ribosomal proteins. The sequential association of the first 12 proteins with the 16S rRNA resulted in the formation of core particles containing up to three mass centers at distinct stages of the assembly process. These globular mass centers may correspond to the three major domains (5', central, and 3') of the 16S rRNA. Through the subsequent interactions of the late assembly proteins with the 16S rRNA, two of the three domains merge, yielding the basic structural traits of the native 30S subunit. The fine morphological features of the native 30S subunit became distinctly resolved only after the addition of the full complement of proteins. The fully reconstituted 30S subunits are active in polyphenylalanine synthesis assays. Visualization of the assembly mechanism of the E. coli 30S ribosomal subunit revealed domain-specific folding of the 16S rRNA through the formation of distinct intermediate core particles hitherto not observed.

摘要

通过高分辨率扫描透射电子显微镜对参与大肠杆菌30S核糖体亚基组装过程的蛋白质-核酸相互作用进行了定量分析。体外重构的核糖核蛋白(核心)颗粒通过其形态、质量和回转半径进行表征。在30S亚基的组装过程中,16S rRNA经历了显著的构象变化,这些变化受核糖体蛋白的协同相互作用支配。前12种蛋白质与16S rRNA的顺序结合导致在组装过程的不同阶段形成含有多达三个质量中心的核心颗粒。这些球状质量中心可能对应于16S rRNA的三个主要结构域(5'、中央和3')。通过后期组装蛋白与16S rRNA的后续相互作用,三个结构域中的两个合并,产生了天然30S亚基的基本结构特征。只有在添加完整的蛋白质补充后,天然30S亚基的精细形态特征才变得清晰可辨。完全重构的30S亚基在聚苯丙氨酸合成测定中具有活性。对大肠杆菌30S核糖体亚基组装机制的可视化揭示了通过形成迄今未观察到的独特中间核心颗粒,16S rRNA的结构域特异性折叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f174/52469/4c193f53edc0/pnas01068-0282-a.jpg

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