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酸性核糖体蛋白的功能作用。细菌和真核细胞蛋白质的互换性。

Functional role of acidic ribosomal proteins. Interchangeability of proteins from bacterial and eukaryotic cells.

作者信息

Sánchez-Madrid F, Vidales F J, Ballesta J P

出版信息

Biochemistry. 1981 May 26;20(11):3263-6. doi: 10.1021/bi00514a043.

Abstract

Core particles derived from yeast ribosomes by treatment with 50% ethanol and 0.4 M NH4Cl (P0.4 cores) are derived of the acidic proteins L44/45 functionally equivalent to the bacterial proteins L7 and L12. These bacterial proteins are able to reconstitute the EF-2-dependent GDP binding capacity of the yeast cores but not their GTPase activity. On the other hand, yeast particles prepared in similar conditions but in the presence of 1 M NH4Cl (P1.0 cores) lose proteins L44/45, L15, and S31. These particles are able to reconstitute both activities by the bacterial proteins L7 and L12. Proteins L15 and S31 somehow affect the interaction of bacterial proteins L7 and L12 with the yeast particles. Indeed, in their presence only one dimer of L7 and L12 is bound to the P0.4 cores, while in their absence (P1.0 cores) the amount of bacterial proteins retained by the yeast particles is doubled. Elongation factor EF-2 seems to play an important role in the binding of the bacterial proteins to the yeast cores. Our results suggest that the two dimers of L7 and L12 normally present in the ribosomes might play a different functional role, one of the dimers being related to the binding of the substrate and the other one involved in the GTPase active center.

摘要

通过用50%乙醇和0.4M氯化铵处理(P0.4核心)从酵母核糖体衍生而来的核心颗粒含有功能上等同于细菌蛋白L7和L12的酸性蛋白L44/45。这些细菌蛋白能够重建酵母核心颗粒依赖于延伸因子2(EF-2)的GDP结合能力,但不能重建其GTP酶活性。另一方面,在类似条件下但在1M氯化铵存在下制备的酵母颗粒(P1.0核心)会丢失蛋白L44/45、L15和S31。这些颗粒能够通过细菌蛋白L7和L12重建这两种活性。蛋白L15和S31以某种方式影响细菌蛋白L7和L12与酵母颗粒的相互作用。实际上,在它们存在的情况下,只有一个L7和L12二聚体与P0.4核心结合,而在它们不存在的情况下(P1.0核心),酵母颗粒保留的细菌蛋白量会加倍。延伸因子EF-2似乎在细菌蛋白与酵母核心颗粒的结合中起重要作用。我们的结果表明,核糖体中通常存在的两个L7和L12二聚体可能发挥不同的功能作用,其中一个二聚体与底物结合有关,另一个二聚体参与GTP酶活性中心。

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