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tRNA错配动力学的解释

Interpretation of tRNA-mischarging kinetics.

作者信息

Dietrich A, Kern D, Bonnet J, Giegé R, Ebel J P

出版信息

Eur J Biochem. 1976 Nov 1;70(1):147-58. doi: 10.1111/j.1432-1033.1976.tb10965.x.

Abstract

Incorrect tRNA aminoacylation reactions are characterized by very slow reaction rates and by the fact that in most cases they are incomplete. In a previous study some of us explained the incompleteness of the correct aminoacylation reactions of tRNA, which can be encountered under certain experimental conditions (for instance low enzyme concentration or high ionic strength) by an equilibrium between the aminoacylation and the deacylation reactions [J. Bonnet and J.P. Ebel (1972) Eur. J.Biochem. 31, 335-344]. In the present report we bring evidence that the incorrect valylation of yeast tRNAfMet by yeast valyl-tRNA synthetase studied under standard experimental conditions, can also be described by a kinetic rate law including the rate equations of the aminoacylation and of the various deacylation reactions. In particular we show that the incomplete mischarging plateaus reflect the existence of an equilibrium between the valylation reaction on the one hand and the spontaneous and enzymic deacylation of valyl-tRNAfMet and the reverse of the valylation reaction on the other hand. However, when the valyl-tRNA synthetase concentration is not very high the reverse reaction of the amino-acylation does not play a predominant part in the establishment of the plateau. These interpretations have been extended to other mischarging systems: valylation of yeast tRNAPhE by yeast valyl-tRNA synthetase and mischarging of tRNAfMet and tRNA2Val from yeast by yeast phenylalanyl-tRNA synthetase. Unusual mischarging kinetics have been discussed. Furthermore, and as in correct systems, we found that during the mischarging of tRNAfMet one ATP is hydrolyzed per tRNA charged with valine. We conclude that the correct and the incorrect amino-acylation of tRNA behave kinetically in a similar way.

摘要

错误的tRNA氨基酰化反应的特点是反应速率非常缓慢,且在大多数情况下反应不完全。在之前的一项研究中,我们中的一些人解释了tRNA正确氨基酰化反应的不完全性,这种情况在某些实验条件下(例如低酶浓度或高离子强度)会出现,这是由于氨基酰化反应与去酰化反应之间的平衡所致[J. 博内特和J.P. 埃贝尔(1972年),《欧洲生物化学杂志》31卷,335 - 344页]。在本报告中,我们提供证据表明,在标准实验条件下研究的酵母缬氨酰 - tRNA合成酶对酵母tRNAfMet的错误缬氨酰化,也可以用一个动力学速率定律来描述,该定律包括氨基酰化反应和各种去酰化反应的速率方程。特别是我们表明,不完全的错配平台反映了一方面缬氨酰化反应与另一方面缬氨酰 - tRNAfMet的自发和酶促去酰化以及缬氨酰化反应的逆反应之间存在平衡。然而,当缬氨酰 - tRNA合成酶浓度不是非常高时,氨基酰化的逆反应在平台的建立中并不起主要作用。这些解释已扩展到其他错配系统:酵母缬氨酰 - tRNA合成酶对酵母tRNAPhE的缬氨酰化以及酵母苯丙氨酰 - tRNA合成酶对酵母tRNAfMet和tRNA2Val的错配。讨论了不寻常的错配动力学。此外,与正确系统一样,我们发现在tRNAfMet的错配过程中,每一个被缬氨酸充电的tRNA会水解一个ATP。我们得出结论,tRNA的正确和错误氨基酰化在动力学上表现相似。

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