Veres Z, Neszmélyi A, Szabolcs A, Kiss A I, Dénes G
Central Research Institute for Chemistry, Hungarian Academy of Sciences, Budapest.
Arch Biochem Biophys. 1991 Apr;286(1):1-5. doi: 10.1016/0003-9861(91)90001-y.
2,2'-Anhydro-3'-deoxy-5-ethyluridine, a new pyrimidine nucleoside analog, has been examined in terms of its binding potency to uridine phosphorylase, and its conformation in solution (NMR) was studied. 2,2'-Anhydro-3'-deoxy-5-ethyluridine has a Ki value of 3.4 microM for uridine phosphorylase from rat intestinal mucosa. This value is approximately one order of magnitude lower than the Km for uridine (22 microM), the natural substrate. The presence of the 3'-OH group (in the ribo-configuration) on pyrimidine nucleoside analogs may not be considered a prerequisite for the binding to uridine phosphorylase; however, it enhances the binding in the case of flexible ligands cooperating in the process of conformation change toward a more favorable enzyme-ligand interaction. The presence of the 3'-OH group in pyrimidine nucleosides seems to be essential if the molecule is to become a substrate.
2,2'-脱水-3'-脱氧-5-乙基尿苷是一种新型嘧啶核苷类似物,已对其与尿苷磷酸化酶的结合能力进行了研究,并对其在溶液中的构象(核磁共振)进行了研究。2,2'-脱水-3'-脱氧-5-乙基尿苷对大鼠肠黏膜尿苷磷酸化酶的Ki值为3.4微摩尔。该值比天然底物尿苷的Km(22微摩尔)低约一个数量级。嘧啶核苷类似物上3'-OH基团(核糖构型)的存在可能不被视为与尿苷磷酸化酶结合的先决条件;然而,对于在构象变化过程中协同作用以实现更有利的酶-配体相互作用的柔性配体,它会增强结合。如果分子要成为底物,嘧啶核苷中3'-OH基团的存在似乎至关重要。