Inhibition of the two-subsite β-D-xylosidase from Selenomonas ruminantium by sugars:: Competitive, noncompetitive, double binding, and slow binding modes

被引:25
作者
Jordan, Douglas B. [1 ]
Braker, Jay D. [1 ]
机构
[1] USDA ARS, Natl Ctr Agr Utilizat Res, Fermentat Biotechnol Res Unit, Agr Res Serv, Peoria, IL 61604 USA
关键词
glycoside hydrolase; GH43; alpha-L-arabinofuranosidase; hysteresis; hemicellulose; saccharification; structure-function; FERMENTATION; HYDROLYSIS;
D O I
10.1016/j.abb.2007.05.016
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
The active site of the GH43 beta-xylosidase from Selenomonas ruminantium comprises two subsites and a single access route for ligands. Steady-state kinetic experiments that included enzyme (E), inhibitory sugars (I and X) and substrate (S) establish examples of El, Ell, EIX, and EIS complexes. Protonation states of catalytic base (D14, pK, 5) and catalytic acid (E186, pK,, 7) govern formation of inhibitor complexes and strength of binding constants: e.g., Ell, EIX, and EIS occur only with the D14(-)E186 H enzyme and D-xylose binds to D14(-)E186(-) better than to D14(-)E186(H). Binding of two equivalents of L-arabinose to the D14-E186 H enzyme is differentiated by the magnitude of equilibrium K; values (first binds tighter) and kinetically (first binds rapidly; second binds slowly). In applications, such as saccharification of herbaceous biomass for subsequent fermentation to biofuels, the highly efficient hydrolase can confront molar concentrations of sugars that diminish catalytic effectiveness by forming certain enzyme-inhibitor complexes. Published by Elsevier Inc.
引用
收藏
页码:231 / 246
页数:16
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