Mirza Osman, Skov Lars K, Sprogøe Desiree, van den Broek Lambertus A M, Beldman Gerrit, Kastrup Jette S, Gajhede Michael
Biostructural Research Unit, Department of Medicinal Chemistry, Danish University of Pharmaceutical Sciences, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
J Biol Chem. 2006 Nov 17;281(46):35576-84. doi: 10.1074/jbc.M605611200. Epub 2006 Sep 21.
The reaction mechanism of sucrose phosphorylase from Bifidobacterium adolescentis (BiSP) was studied by site-directed mutagenesis and x-ray crystallography. An inactive mutant of BiSP (E232Q) was co-crystallized with sucrose. The structure revealed a substrate-binding mode comparable with that seen in other related sucrose-acting enzymes. Wild-type BiSP was also crystallized in the presence of sucrose. In the dimeric structure, a covalent glucosyl intermediate was formed in one molecule of the BiSP dimer, and after hydrolysis of the glucosyl intermediate, a beta-D-glucose product complex was formed in the other molecule. Although the overall structure of the BiSP-glucosyl intermediate complex is similar to that of the BiSP(E232Q)-sucrose complex, the glucose complex discloses major differences in loop conformations. Two loops (residues 336-344 and 132-137) in the proximity of the active site move up to 16 and 4 A, respectively. On the basis of these findings, we have suggested a reaction cycle that takes into account the large movements in the active-site entrance loops.
通过定点诱变和X射线晶体学研究了青春双歧杆菌蔗糖磷酸化酶(BiSP)的反应机制。BiSP的一个无活性突变体(E232Q)与蔗糖共结晶。该结构揭示了一种与其他相关蔗糖作用酶中所见类似的底物结合模式。野生型BiSP也在蔗糖存在下结晶。在二聚体结构中,BiSP二聚体的一个分子中形成了共价葡萄糖基中间体,在葡萄糖基中间体水解后,另一个分子中形成了β-D-葡萄糖产物复合物。尽管BiSP-葡萄糖基中间体复合物的整体结构与BiSP(E232Q)-蔗糖复合物相似,但葡萄糖复合物揭示了环构象的主要差异。活性位点附近的两个环(残基336-344和132-137)分别向上移动了16 Å和4 Å。基于这些发现,我们提出了一个考虑到活性位点入口环中大幅移动的反应循环。