Elyas Yasmeen Yousif Ahmed, Miyatani Kazusa, Bito Tomohiro, Uraji Misugi, Hatanaka Tadashi, Shimizu Katsuhiko, Arima Jiro
United Graduate School of Agricultural Sciences, Tottori University, Tottori 680-8553, Japan.
Graduate School of Agricultural Sciences, Tottori University, Tottori 680-8553, Japan.
J Biosci Bioeng. 2018 Sep;126(3):293-300. doi: 10.1016/j.jbiosc.2018.03.004. Epub 2018 Apr 5.
d-Stereospecific amidohydrolase from Streptomyces sp. 82F2 (DAH) recognizes d-amino acyl ester derivatives as substrates and catalyzes hydrolysis and aminolysis to yield d-amino acids and d-amino acyl peptides or amide derivatives, respectively. Crystallographic analysis has revealed that DAH possesses a large cavity with a small pocket at the bottom. Because the pocket is close to the catalytic center and is thought to interact with substrates, we examined the function of the eight residues that form the pocket in terms of substrate recognition and aminolysis via mutational analysis. Formation of the acyl-enzyme intermediate and catalysis of aminolysis by DAH were changed by substitutions of selected residues with Ala. In particular, I338A DAH exhibited a significant increase in the condensation product of Ac-d-Phe methyl ester and 1,8-diaminooctane (Ac-d-Phe-1,8-diaminooctane) compared with the wild-type DAH. A similar effect was observed by the mutation of Ile338 to Gly and Ser. The pocket shapes and local flexibility of the mutants I338G, I338A, and I338S are thought to resemble each other. Thus, changes in the shape and local flexibility of the pocket of DAH by mutation presumably alter substrate recognition for aminolysis.
来自链霉菌属82F2的d-立体特异性酰胺水解酶(DAH)将d-氨基酰酯衍生物识别为底物,并催化水解和氨解反应,分别生成d-氨基酸和d-氨基酰肽或酰胺衍生物。晶体学分析表明,DAH具有一个大腔,底部有一个小口袋。由于该口袋靠近催化中心且被认为与底物相互作用,我们通过突变分析研究了构成该口袋的八个残基在底物识别和氨解方面的功能。通过将选定的残基替换为丙氨酸,DAH的酰基酶中间体的形成和氨解催化作用发生了变化。特别是,与野生型DAH相比,I338A DAH在Ac-d-苯丙氨酸甲酯与1,8-二氨基辛烷的缩合产物(Ac-d-苯丙氨酸-1,8-二氨基辛烷)方面表现出显著增加。将Ile338突变为Gly和Ser时也观察到了类似的效果。I338G、I338A和I338S突变体的口袋形状和局部灵活性被认为彼此相似。因此,通过突变改变DAH口袋的形状和局部灵活性可能会改变对氨解的底物识别。