Airas R K
Department of Biochemistry, University of Turku, Finland.
Eur J Biochem. 1992 Dec 1;210(2):443-50. doi: 10.1111/j.1432-1033.1992.tb17440.x.
Derivation of a steady-state rate equation for the aminoacyl-tRNA synthetases is described, and its suitability for the analysis of various details of the reaction is tested. The equation is applied to the magnesium and spermidine dependences of the isoleucyl-tRNA synthetase reaction. Earlier work [Airas, R.K. (1990) Eur. J. Biochem. 192, 401-409] is expanded by experiments and calculations of the tRNA kinetics. The analysis suggests the following new details in addition to the earlier results: (a) The binding of tRNA to the enzyme (and not only the rate of the aminoacylation reaction) is affected by the presence of the Mg2+ and spermidine in the tRNA molecule. At least two bound Mg2+ or spermidines are required. (b) tRNA and PPi partly inhibit the binding of each other to the enzyme. (c) The transfer reaction is rather slow, and, at least under some conditions, it participates in rate limitation. (d) A Mg(2+)-induced reduction in the aminoacylation rate seems to be directed to the dissociation of the aminoacyl-tRNA from the enzyme. This dissociation rate is enhanced if a Mg2+ is first dissociated from the enzyme or tRNA. An increase in the Mg2+ concentration shifts the rate limitation from the transfer reaction towards dissociation of the product.
本文描述了氨酰 - tRNA合成酶稳态速率方程的推导过程,并测试了其对反应各种细节分析的适用性。该方程应用于异亮氨酰 - tRNA合成酶反应对镁离子和亚精胺的依赖性。通过tRNA动力学的实验和计算,对早期的工作[艾拉斯,R.K.(1990)《欧洲生物化学杂志》192,401 - 409]进行了扩展。分析表明,除了早期结果外,还有以下新细节:(a)tRNA与酶的结合(不仅是氨酰化反应速率)受tRNA分子中Mg2 +和亚精胺的存在影响。至少需要两个结合的Mg2 +或亚精胺。(b)tRNA和PPi部分抑制彼此与酶的结合。(c)转移反应相当缓慢,并且至少在某些条件下,它参与速率限制。(d)Mg(2 +)诱导的氨酰化速率降低似乎是针对氨酰 - tRNA从酶上的解离。如果Mg2 +首先从酶或tRNA上解离,这种解离速率会增强。Mg2 +浓度的增加将速率限制从转移反应转向产物的解离。