ACTIVE SITE-DIRECTED INHIBITION BY OPTICALLY PURE EPOXYALKYL CELLOBIOSIDES REVEALS DIFFERENCES IN ACTIVE-SITE GEOMETRY OF 2 1,3-1,4-BETA-D-GLUCAN 4-GLUCANOHYDROLASES - THE IMPORTANCE OF EPOXIDE STEREOCHEMISTRY FOR ENZYME INACTIVATION

被引:0
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作者
HOJ, PB
RODRIGUEZ, EB
ISER, JR
STICK, RV
STONE, BA
机构
[1] LA TROBE UNIV, COMMONWEALTH SPECIAL RES CTR PROT & ENZYME TECHNOL, BUNDOORA, VIC 3083, AUSTRALIA
[2] UNIV WESTERN AUSTRALIA, DEPT ORGAN CHEM, NEDLANDS, WA 6009, AUSTRALIA
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中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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.
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页码:11628 / 11631
页数:4
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