Alexeev C S, Sivets G G, Safonova T N, Mikhailov S N
a Engelhardt Institute of Molecular Biology, Russian Academy of Sciences , Moscow , Russia.
b Institute of Bioorganic Chemistry, National Academy of Sciences of Belarus , Minsk , Belarus.
Nucleosides Nucleotides Nucleic Acids. 2017 Feb;36(2):107-121. doi: 10.1080/15257770.2016.1223306. Epub 2016 Nov 15.
Twenty five uridine analogues have been tested and compared with uridine with respect to their potency to bind to E. coli uridine phosphorylase. The kinetic constants of the phosphorolysis reaction of uridine derivatives modified at 2'-, 3'- and 5'-positions of the sugar moiety and 2-, 4-, 5- and 6-positions of the heterocyclic base were determined. The absence of the 2'- or 5'-hydroxyl group is not crucial for the successful binding and phosphorolysis. On the other hand, the absence of both the 2'- and 5'-hydroxyl groups leads to the loss of substrate binding to the enzyme. The same effect was observed when the 3'-hydroxyl group is absent, thus underlining the key role of this group. Our data shed some light on the mechanism of ribo- and 2'-deoxyribonucleoside discrimination by E. coli uridine phosphorylase and E. coli thymidine phosphorylase. A comparison of the kinetic results obtained in the present study with the available X-ray structures and analysis of hydrogen bonding in the enzyme-substrate complex demonstrates that uridine adopts an unusual high-syn conformation in the active site of uridine phosphorylase.
已对25种尿苷类似物进行了测试,并就其与大肠杆菌尿苷磷酸化酶的结合能力与尿苷进行了比较。测定了在糖部分的2'-、3'-和5'-位以及杂环碱基的2-、4-、5-和6-位修饰的尿苷衍生物磷酸解反应的动力学常数。2'-或5'-羟基的缺失对于成功结合和磷酸解并非至关重要。另一方面,2'-和5'-羟基均缺失会导致底物与酶的结合丧失。当3'-羟基缺失时也观察到了相同的效果,从而突出了该基团的关键作用。我们的数据为大肠杆菌尿苷磷酸化酶和大肠杆菌胸苷磷酸化酶对核糖核苷和2'-脱氧核糖核苷的区分机制提供了一些线索。将本研究中获得的动力学结果与现有的X射线结构进行比较,并分析酶-底物复合物中的氢键,结果表明尿苷在尿苷磷酸化酶的活性位点采用了一种不寻常的高顺式构象。