Kersters-Hilderson H, Van Doorslaer E, Lippens M, De Bruyne C K
Arch Biochem Biophys. 1984 Oct;234(1):61-72. doi: 10.1016/0003-9861(84)90324-2.
The pH dependence of the kinetic parameters of beta-D-xylosidase (EC. 3.2.1.37) from Bacillus pumilus reveals that an acidic functional group with pK 8.0 is involved in the catalysis. The fast inactivation of the dimeric enzyme by near equivalent amounts of methylmethanethiolsulfonate indicates that one thiol group per monomer is essential for catalysis, consistent with previously reported results. From the reactivity of the thiol groups with respect to 5,5'-dithiobis(2-nitrobenzoic acid), the absence of subunit cooperativity was indicated. The present study also reports on the inactivation of the enzyme by diethylpyrocarbonate, and provides evidence of the importance of a histidine residue. A mechanism of catalysis is presented, in which the thiol group interacts with the substrate via partial proton transfer. The mode of participation of the histidine group is difficult to specify, but may be associated with the maintenance of the active conformation of the enzyme.
短小芽孢杆菌β-D-木糖苷酶(EC. 3.2.1.37)动力学参数的pH依赖性表明,pK为8.0的酸性官能团参与了催化作用。近等量的甲硫醇磺酸甲酯能使二聚体酶快速失活,这表明每个单体中的一个巯基对于催化作用至关重要,这与先前报道的结果一致。从巯基与5,5'-二硫代双(2-硝基苯甲酸)的反应活性来看,表明不存在亚基协同作用。本研究还报道了焦碳酸二乙酯对该酶的失活作用,并提供了组氨酸残基重要性的证据。提出了一种催化机制,其中巯基通过部分质子转移与底物相互作用。组氨酸基团的参与方式难以确定,但可能与维持酶的活性构象有关。