Hrmova Maria, De Gori Ross, Smith Brian J, Vasella Andrea, Varghese Joseph N, Fincher Geoffrey B
Faculty of Sciences, School of Agriculture and Wine, University of Adelaide, Waite Campus, Glen Osmond, SA 5064, Australia.
J Biol Chem. 2004 Feb 6;279(6):4970-80. doi: 10.1074/jbc.M307188200. Epub 2003 Nov 3.
Glucophenylimidazole (PheGlcIm), a tetrahydroimidazopyridine-type inhibitor and 4H3 conformer mimic of a glucoside, binds very tightly to a barley beta-d-glucan glucohydrolase, with a Ki constant of 2 x 10(-9) m and a DeltaG of 51 kJ mol(-1). PheGlcIm binds to the barley beta-d-glucan glucohydrolase approximately 2 x 10(5) times tighter than laminarin, which is the best non-synthetic ground-state substrate found so far for this enzyme, 10(6) times tighter than 4-nitrophenyl beta-d-glucopyranoside, and 2 x 10(7) tighter than glucose. The three-dimensional structure of the beta-d-glucan glucohydrolase with bound PheGlcIm indicates that the complex resembles a hypothetical transition state during the hydrolytic cycle, that the enzyme derives substrate binding energy from the "aglycone" portion of the ligand, and that it also reveals an anti-protonation trajectory for hydrolysis. Continuous electron densities at the 1.6 sigma level form between the three active site residues Asp95, His207, and Asp285, and the C6OH, C7OH, C8OH, and C9OH groups of PheGlcIm. These electron densities correspond to the most favorable interactions in the three-dimensional structure of the beta-d-glucan glucohydrolase-PheGlcIm complex and indicate atomic distances equal to or less than 2.55 A. The crystallographic data were corroborated with ab initio molecular orbital calculations. The data indicate that the 4E conformation of the glucose part of PheGlcIm is critical for tight binding and provide the first evidence for probable substrate distortion during catalysis by this enzyme.
葡糖苯并咪唑(PheGlcIm)是一种四氢咪唑并吡啶型抑制剂,也是一种葡萄糖苷的4H3构象模拟物,它与大麦β -d-葡聚糖葡萄糖水解酶紧密结合,其抑制常数Ki为2×10⁻⁹ m,自由能变化ΔG为51 kJ·mol⁻¹。PheGlcIm与大麦β -d-葡聚糖葡萄糖水解酶的结合力比海带多糖强约2×10⁵倍,海带多糖是目前发现的该酶最佳的非合成基态底物;比4-硝基苯基β -d-葡萄糖苷强10⁶倍;比葡萄糖强2×10⁷倍。结合了PheGlcIm的β -d-葡聚糖葡萄糖水解酶的三维结构表明,该复合物类似于水解循环中的假设过渡态,酶从配体的“苷元”部分获取底物结合能,并且还揭示了水解的反质子化轨迹。在三个活性位点残基天冬氨酸95、组氨酸207和天冬氨酸285与PheGlcIm的C6OH、C7OH、C8OH和C9OH基团之间形成了1.6σ水平的连续电子密度。这些电子密度对应于β -d-葡聚糖葡萄糖水解酶 - PheGlcIm复合物三维结构中最有利的相互作用,并表明原子距离等于或小于2.55 Å。晶体学数据得到了从头算分子轨道计算的证实。数据表明,PheGlcIm葡萄糖部分的4E构象对于紧密结合至关重要,并为该酶催化过程中可能的底物变形提供了首个证据。