Matsumura I, Kirsch J F
Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.
Biochemistry. 1996 Feb 13;35(6):1881-9. doi: 10.1021/bi951671q.
The chicken and goose egg white lysozymes (ChEWL and GoEWL) are homologues, but differ in substrate specificity. ChEWL catalyzes the hydrolysis of the glycosidic bonds of bacterial peptidoglycans and chitin-derived substrates, while GoEWL is specific for bacterial peptidoglycans. The active-site aspartate 52 residue of ChEWL, which is postulated to stabilize the oxocarbenium ion intermediate, has no counterpart in GoEWL. The substrate specificity of the D52A ChEWL mutant was compared with those of wild-type ChEWL and GoEWL. D52A ChEWL retains approximately 4% of the wild-type catalytic activity in reactions with three different bacterial cell suspensions. Asp52 therefore is not essential to the catalytic mechanism, accounting for only a 2 kcal/mol decrease in delta G++. The function of Asp52 in D52A ChEWL- and GoEWL-catalyzed cleavage of (carboxymethyl)chitin may be partially fulfilled by an appropriately positioned carboxyl group on the substrate (substrate-assisted catalysis). D52A ChEWL and GoEWL, unlike wild-type ChEWL, exhibit biphasic kinetics in the clearing of Micrococcus luteus cell suspensions, suggesting preferences for subsets of the linkages in the M. luteus peptidoglycan. These subsets do not exist in the peptidoglycans of Escherichia coli or Sarcina lutea, since neither D52A ChEWL nor GoEWL exhibits initial bursts in reactions with suspensions of these bacteria. We propose that substrate-assisted catalysis occurs in reactions of D52A ChEWL and GoEWL with M. luteus peptidoglycans, with the glycine carboxyl group of un-cross-linked peptides attached to N-acetylmuramic acid partially substituting the function of the missing Asp52.
鸡和鹅的蛋清溶菌酶(ChEWL和GoEWL)是同源物,但底物特异性不同。ChEWL催化细菌肽聚糖和几丁质衍生底物的糖苷键水解,而GoEWL只对细菌肽聚糖具有特异性。ChEWL的活性位点天冬氨酸52残基被认为可稳定碳鎓离子中间体,而在GoEWL中没有对应的残基。将D52A ChEWL突变体的底物特异性与野生型ChEWL和GoEWL的底物特异性进行了比较。在与三种不同细菌细胞悬液的反应中,D52A ChEWL保留了约4%的野生型催化活性。因此,天冬氨酸52对催化机制并非必不可少,它仅使ΔG++降低2千卡/摩尔。在D52A ChEWL和GoEWL催化的(羧甲基)几丁质裂解反应中,天冬氨酸52的功能可能部分由底物上适当定位的羧基来实现(底物辅助催化)。与野生型ChEWL不同,D52A ChEWL和GoEWL在溶菌微球菌细胞悬液的消解过程中表现出双相动力学,这表明它们对溶菌微球菌肽聚糖中特定连接子集有偏好。这些连接子集在大肠杆菌或藤黄八叠球菌的肽聚糖中不存在,因为D52A ChEWL和GoEWL在与这些细菌悬液的反应中均未出现初始爆发阶段。我们提出,在D52A ChEWL和GoEWL与溶菌微球菌肽聚糖的反应中发生了底物辅助催化,与N - 乙酰胞壁酸相连的未交联肽段的甘氨酸羧基部分替代了缺失的天冬氨酸52的功能。