Avis J M, Fersht A R
Department of Chemistry, University of Cambridge, United Kingdom.
Biochemistry. 1993 May 25;32(20):5321-6. doi: 10.1021/bi00071a006.
The role of binding energy in optimizing the overall rate of catalysis by the tyrosyl-tRNA synthetase from Bacillus stearothermophilus has been investigated by measuring the rate constants for transfer of tyrosine from engineered mutants to tRNA. The residues chosen for mutation are those that were previously identified as binding tyrosyl adenylate and contributing to the rate constant for its formation. It was previously found that tighter binding of the tyrosyl adenylate was accompanied by an increase in the rate constant for its formation. A new linear free energy relationship is presented that links the two. We now find that the rate constant for transfer of Tyr from Tyr-AMP to tRNA decreases with increasing stability of the E.Tyr-AMP complex on mutation of Thr-51. Position 51 is the one that is found to be the most variable of the binding-site residues among the enzymes from different species. The tightness of binding of the intermediate is thus a compromise, since stabilizing the intermediate speeds up the first step but slows down the second. The rate constants for activation and transfer by wild-type enzymes are very similar, which is optimal for the rate of the overall reaction. Those for the mutants diverge so that the rate of overall catalysis is lower.
通过测量酪氨酸从工程突变体转移到tRNA的速率常数,研究了结合能在优化嗜热脂肪芽孢杆菌酪氨酰-tRNA合成酶的整体催化速率中的作用。选择用于突变的残基是那些先前被鉴定为结合酪氨酰腺苷酸并对其形成速率常数有贡献的残基。先前发现,酪氨酰腺苷酸的结合越紧密,其形成的速率常数就越高。本文提出了一种新的线性自由能关系来将两者联系起来。我们现在发现,在第51位苏氨酸发生突变时,酪氨酸从酪氨酰-AMP转移到tRNA的速率常数会随着E·酪氨酰-AMP复合物稳定性的增加而降低。第51位是在来自不同物种的酶中发现的结合位点残基中变化最大的一个。因此,中间体结合的紧密程度是一种折衷,因为稳定中间体虽然加快了第一步反应,但减慢了第二步反应。野生型酶的活化和转移速率常数非常相似,这对于整体反应速率是最优的。突变体的速率常数则有所不同,以至于整体催化速率较低。