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硫链丝菌素在蛋白质合成起始过程中的作用模式。

The mode of action of thiostrepton in the initiation of protein synthesis.

作者信息

Naaktgeboren N, Roobol K, Gubbens J, Voorma H O

出版信息

Eur J Biochem. 1976 Nov 1;70(1):39-47. doi: 10.1111/j.1432-1033.1976.tb10953.x.

Abstract

The inhibition by thiostrepton of the initiation of protein synthesis is exerted at a different level from the inhibition of reactions mediated by EF-Tu and EF-G in the elongation of protein synthesis. The presence of thiostrepton on the 50-S subunit completely prevents the binding of the EF-Tu - GTP - aa-tRNA complex and EF-G - GTP complex to the 70-S ribosome, resulting in cessation of protein synthesis at a concentration of 1 muM thiostrepton. On the other hand, during initiation thiostrepton impairs the coupling of the 50-S subunit with the 30-S initiation complex, indirectly causing inhibition of IF-2-dependent reactions. Impairment of the coupling is strongly influenced by the conditions of incubation. Since formation of formylmethionylpuromycin and the IF-2-dependent GTP hydrolysis are inhibited to the same extent and recycling of IF-2 can take place in the presence of thiostrepton, we conclude that the basic mechanism of inhibition of initiation differs from that of inhibition of elongation.

摘要

硫链丝菌素对蛋白质合成起始的抑制作用与对蛋白质合成延伸过程中由EF-Tu和EF-G介导的反应的抑制作用处于不同水平。硫链丝菌素存在于50-S亚基上时,完全阻止EF-Tu - GTP - 氨酰-tRNA复合物和EF-G - GTP复合物与70-S核糖体结合,在硫链丝菌素浓度为1 μM时导致蛋白质合成停止。另一方面,在起始阶段,硫链丝菌素损害50-S亚基与30-S起始复合物的偶联,间接导致对IF-2依赖性反应的抑制。偶联的损害受孵育条件的强烈影响。由于甲酰甲硫氨酰嘌呤霉素的形成和IF-2依赖性GTP水解受到同等程度的抑制,并且在硫链丝菌素存在的情况下IF-2可以循环利用,我们得出结论,起始抑制的基本机制与延伸抑制的机制不同。

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