Univ Paris-Sud, Equipe de Chimie Bioorganique et Bioinorganique, ICMMO, UMR8182, Bâtiment 420, 15 rue Georges Clemenceau, Orsay F-91405, France.
Bioorg Med Chem. 2009 Oct 15;17(20):7100-7. doi: 10.1016/j.bmc.2009.09.005. Epub 2009 Sep 6.
Non-hydrolyzable d-mannose 6-phosphate analogues in which the phosphate group was replaced by a phosphonomethyl, a dicarboxymethyl, or a carboxymethyl group were synthesized and kinetically evaluated as substrate analogues acting as potential inhibitors of type I phosphomannose isomerases (PMIs) from Saccharomyces cerevisiae and Escherichia coli. While 6-deoxy-6-phosphonomethyl-d-mannose and 6-deoxy-6-carboxymethyl-D-mannose did not inhibit the enzymes significantly, 6-deoxy-6-dicarboxymethyl-D-mannose appeared as a new strong competitive inhibitor of both S. cerevisiae and E. coli PMIs with K(m)/K(i) ratios of 28 and 8, respectively. We thus report the first malonate-based inhibitor of an aldose-ketose isomerase to date. Phosphonomethyl mimics of the 1,2-cis-enediolate high-energy intermediate postulated for the isomerization reaction catalyzed by PMIs were also synthesized but behave as poor inhibitors of PMIs. A polarizable molecular mechanics (SIBFA) study was performed on the complexes of d-mannose 6-phosphate and two of its analogues with PMI from Candida albicans, an enzyme involved in yeast infection homologous to S. cerevisiae and E. coli PMIs. It shows that effective binding to the catalytic site occurs with retention of the Zn(II)-bound water molecule. Thus the binding of the hydroxyl group on C1 of the ligand to Zn(II) should be water-mediated. The kinetic study reported here also suggests the dianionic character of the phosphate surrogate as a likely essential parameter for strong binding of the inhibitor to the enzyme active site.
非水解的 d-甘露糖 6-磷酸类似物,其中磷酸基团被膦酸甲酯、二羧酸甲酯或羧甲基取代,被合成并作为潜在的 I 型磷酸甘露糖异构酶(PMIs)的底物类似物进行动力学评估,来自酿酒酵母和大肠杆菌。虽然 6-去氧-6-膦酸甲酯-d-甘露糖和 6-去氧-6-羧甲基-D-甘露糖对酶没有明显抑制作用,但 6-去氧-6-二羧酸甲酯-D-甘露糖似乎是一种新的强竞争性抑制剂,对酿酒酵母和大肠杆菌 PMIs 的 K(m)/K(i)比值分别为 28 和 8。因此,我们报告了迄今为止第一个基于丙二酸盐的醛糖酮糖异构酶抑制剂。还合成了 PMI 假定的异构化反应中 1,2-顺式烯二醇ate 高能中间物的磷甲基类似物,但作为 PMIs 的抑制剂表现不佳。对与 Candida albicans 的 PMI 的 d-甘露糖 6-磷酸及其两种类似物的复合物进行了极化分子力学(SIBFA)研究,该酶参与与酿酒酵母和大肠杆菌 PMIs 同源的酵母感染。结果表明,与锌(II)结合的水分子的保留有效结合发生在催化位点上。因此,配体 C1 上的羟基与 Zn(II)的结合应该是通过水分子介导的。这里报道的动力学研究还表明,磷酸替代物的二价阴离子特征可能是抑制剂与酶活性位点强结合的一个重要参数。