Høj P B, Rodriguez E B, Iser J R, Stick R V, Stone B A
Department of Biochemistry, La Trobe University, Bundoora, Victoria, Australia.
J Biol Chem. 1991 Jun 25;266(18):11628-31.
1,3-1,4-beta-D-Glucan 4-glucanohydrolases (EC 3.2.-1.73) from Bacillus subtilis and barley (Hordeum vulgare) with identical substrate specificities but unrelated primary structures have been probed with (R,S)-epoxyalkyl (-propyl, -butyl, -pentyl) beta-cellobiosides and with optically pure (3S)- and (3R)-3,4-cellobiosides as active site-directed inhibitors. The optimal aglycon length for inactivation differs for the two enzymes, and they are differentially inhibited by the pure epoxybutyl beta-cellobioside diastereoisomers. The (3S)-epoxybutyl beta-cellobioside inactivates the B. subtilis enzyme much more efficiently than does the (3R)-isomer, whereas the reverse is true for the barley enzyme. Both enzymes are inactivated by a mixture of the stereoisomers at a rate intermediate of that observed with the individual isomers. The two beta-glucan endohydrolases may therefore employ sterically different mechanisms to achieve glycoside bond hydrolysis in their common substrate. The efficiency and specificity of epoxide-based "suicide" inhibitors may be enhanced significantly by the use of inhibitors bearing only one stereoisomeric form of the epoxide group.
来自枯草芽孢杆菌和大麦(大麦)的1,3-1,4-β-D-葡聚糖4-葡聚糖水解酶(EC 3.2.-1.73)具有相同的底物特异性,但一级结构无关,已用(R,S)-环氧烷基(-丙基、-丁基、-戊基)β-纤维二糖苷和光学纯的(3S)-和(3R)-3,4-纤维二糖苷作为活性位点导向抑制剂进行了研究。两种酶失活的最佳糖苷配基长度不同,并且它们被纯环氧丁基β-纤维二糖苷非对映异构体差异性抑制。(3S)-环氧丁基β-纤维二糖苷使枯草芽孢杆菌酶失活的效率比(3R)-异构体高得多,而大麦酶的情况则相反。两种酶都被立体异构体混合物以介于单个异构体观察到的速率之间的速率失活。因此,这两种β-葡聚糖内切酶可能采用空间上不同的机制来实现其共同底物中糖苷键的水解。通过使用仅带有一种环氧基团立体异构形式的抑制剂,基于环氧化物的“自杀性”抑制剂的效率和特异性可能会显著提高。