Papageorgiou A C, Oikonomakos N G, Leonidas D D, Bernet B, Beer D, Vasella A
Biological Research Center, National Hellenic Research Foundation, Athens, Greece.
Biochem J. 1991 Mar 1;274 ( Pt 2)(Pt 2):329-38. doi: 10.1042/bj2740329.
Combined kinetic, ultracentrifugation and X-ray-crystallographic studies have characterized the effect of the beta-glucosidase inhibitor gluconohydroximo-1,5-lactone on the catalytic and structural properties of glycogen phosphorylase. In the direction of glycogen synthesis, gluconohydroximo-1,5-lactone was found to competitively inhibit both the b (Ki 0.92 mM) and the alpha form of the enzyme (Ki 0.76 mM) with respect to glucose 1-phosphate in synergism with caffeine. In the direction of glycogen breakdown, gluconohydroximo-1,5-lactone was found to inhibit phosphorylase b in a non-competitive mode with respect to phosphate, and no synergism with caffeine could be demonstrated. Ultracentrifugation and crystallization experiments demonstrated that gluconohydroximo-1,5-lactone was able to induce dissociation of tetrameric phosphorylase alpha and stabilization of the dimeric T-state conformation. A crystallographic binding study with 100 mM-gluconohydroximo-1,5-lactone at 0.24 nm (2.4 A) resolution showed a major peak at the catalytic site, and no significant conformational changes were observed. Analysis of the electron-density map indicated that the ligand adopts a chair conformation. The results are discussed with reference to the ability of the catalytic site of the enzyme to distinguish between two or more conformations of the glucopyranose ring.
联合动力学、超速离心和X射线晶体学研究已对β-葡萄糖苷酶抑制剂葡萄糖异羟肟酸-1,5-内酯对糖原磷酸化酶催化和结构特性的影响进行了表征。在糖原合成方向上,发现葡萄糖异羟肟酸-1,5-内酯与咖啡因协同作用时,相对于葡萄糖1-磷酸,能竞争性抑制该酶的b型(Ki为0.92 mM)和α型(Ki为0.76 mM)。在糖原分解方向上,发现葡萄糖异羟肟酸-1,5-内酯相对于磷酸盐以非竞争性模式抑制磷酸化酶b,且未证明与咖啡因有协同作用。超速离心和结晶实验表明,葡萄糖异羟肟酸-1,5-内酯能够诱导四聚体磷酸化酶α解离并稳定二聚体T态构象。一项在0.24 nm(2.4 Å)分辨率下用100 mM葡萄糖异羟肟酸-1,5-内酯进行的晶体学结合研究显示,在催化位点有一个主峰,未观察到明显的构象变化。电子密度图分析表明,该配体呈椅式构象。结合该酶催化位点区分葡萄糖吡喃糖环两种或更多种构象的能力对结果进行了讨论。