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嗜热四膜虫肽链延伸系统和核糖体ATP酶作为酵母延伸因子3(EF-3)对应物的可溶性因子需求。

Soluble factor requirements for the Tetrahymena peptide elongation system and the ribosomal ATPase as a counterpart of yeast elongation factor 3 (EF-3).

作者信息

Miyazaki M, Kagiyama H

机构信息

Department of Molecular Biology, School of Science, Nagoya University, Aichi.

出版信息

J Biochem. 1990 Dec;108(6):1001-8. doi: 10.1093/oxfordjournals.jbchem.a123298.

Abstract

Peptide elongation factor 3 (EF-3), which is widely present in yeasts and fungi (Eumycota), does not occur in another lower eukaryote, the unicellular protozoan Tetrahymena pyriformis, as was shown by the following findings: (a) there is no activity to satisfy the EF-3 requirement of yeast ribosomes in the post-ribosomal supernatant fraction from Tetrahymena, and (b) the Tetrahymena ribosomes displayed their full capacity for polyphenylalanine synthesis with purified EF-1 alpha and EF-2 alone from either Tetrahymena or yeast, and their activity on the Tetrahymena ribosomes was not further enhanced by the addition of yeast EF-3, in contrast to the case of the yeast ribosomes. However, as a substitute for the ribosome-activated nucleotidase activity of EF-3, Tetrahymena ribosomes were shown to harbor strong, firmly bound ATPase and GTPase activities, which probably involve the same active site. The ribosome-bound ATPase activity was inhibited by a polyclonal antibody raised against yeast EF-3 with the same inactivation profile as that of polyphenylalanine synthesis on Tetrahymena ribosomes, indicating that the ribosomal ATPase plays an essential role in the elongation process on Tetrahymena ribosomes as previously revealed in the yeast system. It was also shown that the ribosomal nucleotidase plays a pivotal role in the elongation cycle in other eukaryotes.

摘要

肽链延伸因子3(EF - 3)广泛存在于酵母和真菌(真真菌亚门)中,但在另一种低等真核生物——单细胞原生动物梨形四膜虫中却不存在,以下研究结果表明了这一点:(a)梨形四膜虫核糖体后上清组分中不存在满足酵母核糖体对EF - 3需求的活性;(b)梨形四膜虫核糖体仅与来自梨形四膜虫或酵母的纯化EF - 1α和EF - 2一起就能充分发挥其合成聚苯丙氨酸的能力,与酵母核糖体的情况相反,添加酵母EF - 3并不能进一步增强其在梨形四膜虫核糖体上的活性。然而,作为EF - 3核糖体激活核苷酸酶活性的替代物,梨形四膜虫核糖体被证明具有强大的、紧密结合的ATP酶和GTP酶活性,这可能涉及同一个活性位点。核糖体结合的ATP酶活性被针对酵母EF - 3产生的多克隆抗体抑制,其失活模式与梨形四膜虫核糖体上聚苯丙氨酸合成的失活模式相同,这表明核糖体ATP酶在梨形四膜虫核糖体的延伸过程中起着至关重要的作用,正如之前在酵母系统中所揭示的那样。研究还表明,核糖体核苷酸酶在其他真核生物的延伸循环中也起着关键作用。

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