X-Ray Structures of Uridine Phosphorylase from Vibrio cholerae in Complexes with Uridine, Thymidine, Uracil, Thymine, and Phosphate Anion: Substrate Specificity of Bacterial Uridine Phosphorylases

被引:7
作者
Prokofev, I. I. [1 ]
Lashkov, A. A. [1 ]
Gabdulkhakov, A. G. [1 ]
Balaev, V. V. [1 ]
Seregina, T. A. [1 ]
Mironov, A. S. [2 ]
Betzel, C. [3 ]
Mikhailov, A. M. [1 ]
机构
[1] Russian Acad Sci, Fed Sci Res Ctr Crystallog & Photon, Shubnikov Inst Crystallog, Moscow 119333, Russia
[2] State Res Inst Genet & Select Ind Microorganisms, Moscow 117545, Russia
[3] Univ Hamburg, Mittelweg 177, D-20148 Hamburg, Germany
基金
俄罗斯基础研究基金会;
关键词
ESCHERICHIA-COLI; SALMONELLA-TYPHIMURIUM; 5-FLUOROURACIL; CRYSTALLIZATION; PURIFICATION; PROGRAM; CAPECITABINE; INHIBITION; METABOLISM; ACTIVATION;
D O I
10.1134/S1063774516060134
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
In many types of human tumor cells and infectious agents, the demand for pyrimidine nitrogen bases increases during the development of the disease, thus increasing the role of the enzyme uridine phosphorylase in metabolic processes. The rational use of uridine phosphorylase and its ligands in pharmaceutical and biotechnology industries requires knowledge of the structural basis for the substrate specificity of the target enzyme. This paper summarizes the results of the systematic study of the three-dimensional structure of uridine phosphorylase from the pathogenic bacterium Vibrio cholerae in complexes with substrates of enzymatic reactions-uridine, phosphate anion, thymidine, uracil, and thymine. These data, supplemented with the results of molecular modeling, were used to consider in detail the structural basis for the substrate specificity of uridine phosphorylases. It was shown for the first time that the formation of a hydrogen-bond network between the 2'-hydroxy group of uridine and atoms of the active-site residues of uridine phosphorylase leads to conformational changes of the ribose moiety of uridine, resulting in an increase in the reactivity of uridine compared to thymidine. Since the binding of thymidine to residues of uridine phosphorylase causes a smaller local strain of the beta-N1-glycosidic bond in this the substrate compared to the uridine molecule, the beta-N1-glycosidic bond in thymidine is more stable and less reactive than that in uridine. It was shown for the first time that the phosphate anion, which is the second substrate bound at the active site, interacts simultaneously with the residues of the beta 5-strand and the beta 1-strand through hydrogen bonding, thus securing the gate loop in a conformation.
引用
收藏
页码:954 / 973
页数:20
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