RRC ID 4995
著者 Jordan DB, Mertens JA, Braker JD.
タイトル Aminoalcohols as probes of the two-subsite active site of beta-D-xylosidase from Selenomonas ruminantium.
ジャーナル Biochim Biophys Acta
Abstract Catalysis and inhibitor binding by the GH43 beta-xylosidase are governed by the protonation states of catalytic base (D14, pK(a) 5.0) and catalytic acid (E186, pK(a) 7.2) which reside in subsite -1 of the two-subsite active site. Cationic aminoalcohols are shown to bind exclusively to subsite -1 of the catalytically-inactive, dianionic enzyme (D14(-)E186(-)). Enzyme (E) and aminoalcohols (A) form E-A with the affinity progression: triethanolamine>diethanolamine>ethanolamine. E186A mutation raises the K(i)(triethanolamine) 1000-fold. By occupying subsite -1 with aminoalcohols, affinity of monosaccharide inhibitors (I) for subsite +1 is demonstrated. The single access route for ligands into the active site dictates ordered formation of E-A followed by E-A-I. E-A-I forms with the affinity progression: ethanolamine>diethanolamine>triethanolamine. The latter affinity progression is seen in formation of E-A-substrate complexes with substrate 4-nitrophenyl-beta-d-xylopyranoside (4NPX). Inhibition patterns of aminoalcohols versus 4NPX appear competitive, noncompetitive, and uncompetitive depending on the strength of E-A-4NPX. E-A-substrate complexes form weakly with substrate 4-nitrophenyl-alpha-l-arabinofuranoside (4NPA), and inhibition patterns appear competitive. Biphasic inhibition by triethanolamine reveals minor (<0.03%) contamination of E186A preparations (including a His-Tagged form) by wild-type-like enzyme, likely originating from translational misreading. Aminoalcohols are useful in probing glycoside hydrolases; they cause artifacts when used unwarily as buffer components.
巻・号 1794(1)
ページ 144-58
公開日 2009-1-1
DOI 10.1016/j.bbapap.2008.09.015
PII S1570-9639(08)00294-X
PMID 18973836
MeSH Amino Alcohols / chemistry Amino Alcohols / pharmacology* Arabinose / analogs & derivatives Arabinose / metabolism Base Sequence Catalysis Catalytic Domain Dose-Response Relationship, Drug Enzyme Inhibitors / chemistry Enzyme Inhibitors / pharmacology* Ethanolamines Glycoside Hydrolases / metabolism Glycosides / metabolism Hydrogen-Ion Concentration Hydrolysis Kinetics Models, Molecular Selenomonas / enzymology* Substrate Specificity Xylosidases / antagonists & inhibitors* Xylosidases / chemistry Xylosidases / metabolism
IF 3.411
引用数 11
WOS 分野 BIOPHYSICS BIOCHEMISTRY & MOLECULAR BIOLOGY
リソース情報
原核生物(大腸菌) ME9062(BW25113) JW0264