Lenhard B, Filipić S, Landeka I, Skrtić I, Söll D, Weygand-Durasević I
Department of Chemistry, Faculty of Science, University of Zagreb, Croatia.
J Biol Chem. 1997 Jan 10;272(2):1136-41. doi: 10.1074/jbc.272.2.1136.
The active site of class II aminoacyl-tRNA synthetases contains the motif 2 loop, which is involved in binding of ATP, amino acid, and the acceptor end of tRNA. In order to characterize the active site of Saccharomyces cerevisiae seryl-tRNA synthetase (SerRS), we performed in vitro mutagenesis of the portion of the SES1 gene encoding the motif 2 loop. Substitutions of amino acids conserved in the motif 2 loop of seryl-tRNA synthetases from other sources led to loss of complementation of a yeast SES1 null allele strain by the mutant yeast SES1 genes. Steady-state kinetic analyses of the purified mutant SerRS proteins revealed elevated Km values for serine and ATP, accompanied by decreases in kcat (as expected for replacement of residues involved in aminoacyl-adenylate formation). The differences in the affinities for serine and ATP, in the absence and presence of tRNA are consistent with the proposed conformational changes induced by positioning the 3'-end of tRNA into the active site, as observed recently in structural studies of Thermus thermophilus SerRS (Cusack, S., Yaremchuk, A., and Tukalo, M. (1996) EMBO J. 15, 2834-2842). The crystal structure of this moderately homologous prokaryotic counterpart of the yeast enzyme allowed us to produce a model of the yeast SerRS structure and to place the mutations in a structural context. In conjunction with structural data for T. thermophilus SerRS, the kinetic data presented here suggest that yeast seryl-tRNA synthetase displays tRNA-dependent amino acid recognition.
II类氨酰-tRNA合成酶的活性位点包含基序2环,它参与ATP、氨基酸和tRNA受体末端的结合。为了表征酿酒酵母丝氨酰-tRNA合成酶(SerRS)的活性位点,我们对SES1基因中编码基序2环的部分进行了体外诱变。来自其他来源的丝氨酰-tRNA合成酶基序2环中保守氨基酸的替换导致突变的酵母SES1基因无法互补酵母SES1缺失等位基因菌株。对纯化的突变型SerRS蛋白进行的稳态动力学分析显示,丝氨酸和ATP的Km值升高,同时kcat降低(正如预期的参与氨酰腺苷酸形成的残基被替换的情况)。在不存在和存在tRNA的情况下,对丝氨酸和ATP亲和力的差异与最近在嗜热栖热菌SerRS的结构研究中观察到的将tRNA的3'末端定位到活性位点所诱导的构象变化一致(Cusack, S., Yaremchuk, A., and Tukalo, M. (1996) EMBO J. 15, 2834 - 2842)。这种与酵母酶具有适度同源性的原核对应物的晶体结构使我们能够构建酵母SerRS结构的模型,并将突变置于结构背景中。结合嗜热栖热菌SerRS的结构数据,本文给出的动力学数据表明酵母丝氨酰-tRNA合成酶表现出tRNA依赖性氨基酸识别。