Withers S G, Dombroski D, Berven L A, Kilburn D G, Miller R C, Warren R A, Gilkes N R
Biochem Biophys Res Commun. 1986 Sep 14;139(2):487-94. doi: 10.1016/s0006-291x(86)80017-1.
The stereochemical courses of the hydrolyses catalysed by three glycosidases have been determined directly by 1H nmr. The anomeric configuration of the initially formed product was ascertained in each case by observation of the chemical shift and coupling constant of the anomeric proton at the new hemiacetal centre. Two of the enzymes investigated, an endo-glucanase and an exo-glucanase are components of the cellulase complex of Cellulomonas fimi. The third enzyme is the beta-glucosidase from almond emulsin. Two of these enzymes, the exo-glucanase and the almond beta-glucosidase catalysed hydrolysis with retention of anomeric configuration, in agreement with previous observations on the almond enzyme. The endo-glucanase catalysed hydrolysis with inversion of configuration, this result being confirmed by optical rotation measurements. This 1H nmr approach has several advantages over other techniques in that it is applicable to a wide variety of glycosidases and substrates and it is non-destructive, allowing recovery of the enzyme.
通过1H核磁共振直接确定了三种糖苷酶催化水解的立体化学过程。在每种情况下,通过观察新的半缩醛中心异头质子的化学位移和耦合常数来确定最初形成产物的异头构型。所研究的两种酶,一种内切葡聚糖酶和一种外切葡聚糖酶,是纤维单胞菌纤维素酶复合物的组成部分。第三种酶是杏仁苦杏仁酶中的β-葡萄糖苷酶。其中两种酶,外切葡聚糖酶和杏仁β-葡萄糖苷酶催化水解时构型保持不变,这与之前对杏仁酶的观察结果一致。内切葡聚糖酶催化水解时构型翻转,该结果通过旋光测量得到证实。这种1H核磁共振方法相对于其他技术有几个优点,因为它适用于多种糖苷酶和底物,并且是非破坏性的,能够回收酶。