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大肠杆菌的核糖体蛋白L7/L12。翻译中的定位及可能的分子机制

Ribosomal proteins L7/L12 of Escherichia coli. Localization and possible molecular mechanism in translation.

作者信息

Möller W, Schrier P I, Maassen J A, Zantema A, Schop E, Reinalda H, Cremers A F, Mellema J E

出版信息

J Mol Biol. 1983 Feb 5;163(4):553-73. doi: 10.1016/0022-2836(83)90112-2.

Abstract

Experiments were performed in order to determine the minimal requirement for the proteins L7/L12 in polyphenylalanine synthesis and elongation factor EF-G-dependent GTP hydrolysis. Via reconstitution, ribosomal particles were prepared containing variable amounts of L7/L12. The L7/L12 content of these particles was carefully determined by the use of 3H-labelled L7/L12 and by radioimmunoassay. The activity of the particles was determined as a function of the L7/L12 content. Our results show that only one dimer of L7/L12 is required for full activity in EF-G-dependent GTP hydrolysis. On the other hand, two L7/L12 dimers are required for polyphenylalanine synthesis. In addition, we have determined the relation between the number of L7/L12 stalks, as observed by electron microscopy, and the L7/L12 content of the 50 S particles. Our interpretation of these results is that each ribosomal particle possesses two L7/L12 binding sites, each site being involved in binding one dimer. Binding of L7/L12 dimer in one site gives rise to formation of the L7/L12 stalk, whereas binding in the other site has no effect on the number of visible stalks.

摘要

进行实验以确定在聚苯丙氨酸合成和延伸因子EF-G依赖的GTP水解中蛋白质L7/L12的最低需求。通过重组,制备了含有不同量L7/L12的核糖体颗粒。使用3H标记的L7/L12并通过放射免疫测定法仔细测定了这些颗粒的L7/L12含量。根据L7/L12含量测定颗粒的活性。我们的结果表明,在EF-G依赖的GTP水解中,完全活性仅需要一个L7/L12二聚体。另一方面,聚苯丙氨酸合成需要两个L7/L12二聚体。此外,我们已经确定了通过电子显微镜观察到的L7/L12柄的数量与50 S颗粒的L7/L12含量之间的关系。我们对这些结果的解释是,每个核糖体颗粒具有两个L7/L12结合位点,每个位点参与结合一个二聚体。L7/L12二聚体在一个位点的结合导致L7/L12柄的形成,而在另一个位点的结合对可见柄的数量没有影响。

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