Zhang Chun-Mei, Perona John J, Ryu Kang, Francklyn Christopher, Hou Ya-Ming
Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, PA 19107, USA.
J Mol Biol. 2006 Aug 11;361(2):300-11. doi: 10.1016/j.jmb.2006.06.015. Epub 2006 Jun 27.
Aminoacyl-tRNA synthetases are divided into two classes based on both functional and structural criteria. Distinctions between the classes have heretofore been based on general features, such as the position of aminoacylation on the 3'-terminal tRNA ribose, and the topology and tRNA-binding orientation of the active-site protein fold. Here we show instead that transient burst kinetics provides a distinct mechanistic signature dividing the two classes of tRNA synthetases, and that this distinction has significant downstream effects on protein synthesis. Steady-state and transient kinetic analyses of class I CysRS and ValRS, and class II AlaRS and ProRS, reveal that class I tRNA synthetases are rate-limited by release of aminoacyl-tRNA, while class II synthetases are limited by a step prior to aminoacyl transfer. The tight aminoacyl-tRNA product binding by class I enzymes correlates with the ability of EF-Tu to form a ternary complex with class I but not class II synthetases, and the further capacity of this protein to enhance the rate of aminoacylation by class I synthetases. These results emphasize that the distinct mechanistic signatures of class I versus class II tRNA synthetases ensure rapid turnover of aminoacyl-tRNAs during protein synthesis.
氨酰 - tRNA合成酶根据功能和结构标准分为两类。迄今为止,两类之间的区别基于一般特征,例如3'-末端tRNA核糖上的氨酰化位置,以及活性位点蛋白质折叠的拓扑结构和tRNA结合方向。相反,我们在此表明,瞬态爆发动力学提供了区分两类tRNA合成酶的独特机制特征,并且这种区分对蛋白质合成具有重要的下游影响。对I类半胱氨酸 - tRNA合成酶(CysRS)和缬氨酸 - tRNA合成酶(ValRS)以及II类丙氨酸 - tRNA合成酶(AlaRS)和脯氨酸 - tRNA合成酶(ProRS)的稳态和瞬态动力学分析表明,I类tRNA合成酶受氨酰 - tRNA释放的速率限制,而II类合成酶受氨酰转移之前一步的限制。I类酶对氨酰 - tRNA产物的紧密结合与延伸因子Tu(EF - Tu)与I类而非II类合成酶形成三元复合物的能力相关,以及该蛋白质进一步提高I类合成酶氨酰化速率的能力。这些结果强调,I类与II类tRNA合成酶不同的机制特征确保了蛋白质合成过程中氨酰 - tRNA的快速周转。