Department of Chemistry, Simon Fraser University, 8888 University Drive, Burnaby, British Columbia, V5A 1S6, Canada.
J Am Chem Soc. 2012 Feb 29;134(8):3748-57. doi: 10.1021/ja208564y. Epub 2012 Feb 17.
A series of isotopically labeled natural substrate analogues (phenyl 5-N-acetyl-α-d-neuraminyl-(2→3)-β-d-galactopyranosyl-(1→4)-1-thio-β-d-glucopyranoside; Neu5Acα2,3LacβSPh, and the corresponding 2→6 isomer) were prepared chemoenzymatically in order to characterize, by use of multiple kinetic isotope effect (KIE) measurements, the glycosylation transition states for Vibrio cholerae sialidase-catalyzed hydrolysis reactions. The derived KIEs for Neu5Acα2,3LacβSPh for the ring oxygen ((18)V/K), leaving group oxygen ((18)V/K), C3-S deuterium ((D)V/K(S)) and C3-R deuterium ((D)V/K(R)) are 1.029 ± 0.002, 0.983 ± 0.001, 1.034 ± 0.002, and 1.043 ± 0.002, respectively. In addition, the KIEs for Neu5Acα2,6βSPh for C3-S deuterium ((D)V/K(S)) and C3-R deuterium ((D)V/K(R)) are 1.021 ± 0.001 and 1.049 ± 0.001, respectively. The glycosylation transition state structures for both Neu5Acα2,3LacβSPh and Neu5Acα2,6LacβSPh were modeled computationally using the experimental KIE values as goodness of fit criteria. Both transition states are late with largely cleaved glycosidic bonds coupled to pyranosyl ring flattening ((4)H(5) half-chair conformation) with little or no nucleophilic involvement of the enzymatic tyrosine residue. Notably, the transition state for the catalyzed hydrolysis of Neu5Acα2,6βSPh appears to incorporate a lesser degree of general-acid catalysis, relative to the 2,3-isomer.
为了通过使用多种动力学同位素效应 (KIE) 测量来表征霍乱弧菌唾液酸酶催化水解反应的糖基化过渡态,我们通过化学酶法制备了一系列同位素标记的天然底物类似物(苯 5-N-乙酰-α-d-神经氨酸基-(2→3)-β-d-半乳糖吡喃基-(1→4)-1-硫-β-d-葡萄糖苷;Neu5Acα2,3LacβSPh 及其相应的 2→6 异构体)。Neu5Acα2,3LacβSPh 的环氧 ((18)V/K)、离去基团氧 ((18)V/K)、C3-S 氘 ((D)V/K(S)) 和 C3-R 氘 ((D)V/K(R)) 的推导 KIE 分别为 1.029 ± 0.002、0.983 ± 0.001、1.034 ± 0.002 和 1.043 ± 0.002。此外,Neu5Acα2,6βSPh 的 KIE 对于 C3-S 氘 ((D)V/K(S)) 和 C3-R 氘 ((D)V/K(R)) 分别为 1.021 ± 0.001 和 1.049 ± 0.001。通过使用实验 KIE 值作为拟合标准,使用计算方法对 Neu5Acα2,3LacβSPh 和 Neu5Acα2,6LacβSPh 的糖基化过渡态结构进行建模。两个过渡态均为后期,糖苷键大部分断裂,吡喃环变平((4)H(5) 半椅构象),酶酪氨酸残基的亲核参与很少或没有。值得注意的是,与 2,3-异构体相比,Neu5Acα2,6βSPh 催化水解的过渡态似乎包含较小程度的广义酸催化。