Guth Ethan, Connolly Susan H, Bovee Michael, Francklyn Christopher S
Department of Biochemistry, University of Vermont, Health Sciences Complex, Burlington, Vermont 05405, USA.
Biochemistry. 2005 Mar 15;44(10):3785-94. doi: 10.1021/bi047923h.
Aminoacyl-tRNA synthetases (aaRS) join amino acids to their cognate transfer RNAs, establishing an essential coding relationship in translation. To investigate the mechanism of aminoacyl transfer in class II Escherichia coli histidyl-tRNA synthetase (HisRS), we devised a rapid quench assay. Under single turnover conditions with limiting tRNA, aminoacyl transfer proceeds at 18.8 s(-)(1), whereas in the steady state, the overall rate of aminoacylation is limited by amino acid activation to a rate of 3 s(-)(1). In vivo, this mechanism may serve to allow the size of amino acid pools and energy charge to control the rate of aminoacylation and thus protein synthesis. Aminoacyl transfer experiments using HisRS active site mutants and phosphorothioate-substituted adenylate showed that substitution of the nonbridging Sp oxygen of the adenylate decreased the transfer rate at least 10 000-fold, providing direct experimental evidence for the role of this group as a general base for the reaction. Other kinetic experiments revealed that the rate of aminoacyl transfer is independent of the interaction between the carboxyamide group of Gln127 and the alpha-carboxylate carbon, arguing against the formation of a tetrahedral intermediate during the aminoacyl transfer. These experiments support a substrate-assisted concerted mechanism for HisRS, a feature that may generalize to other aaRS, as well as the peptidyl transferase center.
氨酰 - tRNA合成酶(aaRS)将氨基酸连接到其对应的转运RNA上,在翻译过程中建立了一种基本的编码关系。为了研究II类大肠杆菌组氨酰 - tRNA合成酶(HisRS)中氨酰基转移的机制,我们设计了一种快速淬灭实验。在tRNA有限的单周转条件下,氨酰基转移的速率为18.8 s⁻¹,而在稳态下,氨酰化的总体速率受氨基酸活化限制,为3 s⁻¹。在体内,这种机制可能有助于使氨基酸库的大小和能量状态控制氨酰化速率,从而控制蛋白质合成。使用HisRS活性位点突变体和硫代磷酸酯取代的腺苷酸进行的氨酰基转移实验表明,腺苷酸非桥连Sp氧的取代使转移速率降低了至少10000倍,为该基团作为反应通用碱的作用提供了直接实验证据。其他动力学实验表明,氨酰基转移速率与Gln127的羧酰胺基团和α - 羧酸盐碳之间的相互作用无关,这与氨酰基转移过程中形成四面体中间体的观点相悖。这些实验支持了HisRS的底物辅助协同机制,这一特征可能也适用于其他aaRS以及肽基转移酶中心。