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Energetics of activation of GTP hydrolysis on the ribosome.

机译:核糖体上GTP水解活化的能量学。

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摘要

Several of the steps in protein synthesis on the ribosome utilize hydrolysis of guanosine triphosphate (GTP) as the driving force. This reaction is catalyzed by translation factors that become activated upon binding to the ribosome. The recently determined crystal structure of an elongation factor-Tu ternary complex bound to the ribosome allows the energetics of GTP activation to be explored by computer simulations. A central problem regards the role of the universally conserved histidine, which has been proposed to act as a general base for guanosine triphosphate hydrolysis. Here we report a detailed energetic and structural analysis of different possible protonation states that could be involved in activation of the reaction. We show that the histidine cannot act as a general base, but must be protonated and in its active conformation to promote GTP hydrolysis. We further show that the sarcin-ricin loop of the ribosome spontaneously drives the histidine into the correct conformation for GTP activation.Registry Number/Name of Substance 86-01-1 (Guanosine Triphosphate). EC 3-6-1 (GTP Phosphohydrolases).
机译:核糖体上蛋白质合成中的几个步骤都利用了鸟苷三磷酸(GTP)的水解作为驱动力。该反应由翻译因子催化,该翻译因子在与核糖体结合后被激活。最近确定的与核糖体结合的延伸因子-Tu三元复合物的晶体结构允许通过计算机模拟探索GTP活化的能量学。中心问题涉及普遍保守的组氨酸的作用,该组氨酸已被提议用作三磷酸鸟苷水解的一般碱。在这里,我们报告了可能参与反应激活的不同质子化状态的详细的能量和结构分析。我们表明,组氨酸不能作为一般的碱,但必须被质子化并以其活性构象促进GTP水解。我们进一步表明核糖体的sarcin-ricin环自发地驱动组氨酸进入GTP激活的正确构象。注册号/物质86-1-1(三磷酸瓜氨酸)的名称。 EC 3-6-1(GTP磷酸水解酶)。

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