Versées Wim, Steyaert Jan
Department of Ultrastructure, Vlaams Interuniversitair Instituut voor Biotechnologie, Vrije Universiteit Brussel, Pleinlaan 2, 1050 Brussel, Belgium.
Curr Opin Struct Biol. 2003 Dec;13(6):731-8. doi: 10.1016/j.sbi.2003.10.002.
Nucleoside hydrolases cleave the N-glycosidic bond of ribonucleosides. Because of their vital role in the protozoan purine salvage pathway, nucleoside hydrolases from parasitic protozoa in particular have been studied extensively by X-ray crystallography, kinetic methods and site-directed mutagenesis. An elaborate network of conserved interactions between the metalloenzyme and the ribose enables steric and electrostatic stabilisation of the oxocarbenium-ion-like transition state. Activation of the leaving group by protonation before the formation of the transition state is a recurring catalytic strategy of enzymes that cleave N-glycosidic bonds. However, the mechanisms underlying leaving group activation are still the subject of debate for the nucleoside hydrolases.
核苷水解酶可裂解核糖核苷的N-糖苷键。由于其在原生动物嘌呤补救途径中的重要作用,特别是来自寄生原生动物的核苷水解酶已通过X射线晶体学、动力学方法和定点诱变进行了广泛研究。金属酶与核糖之间精心构建的保守相互作用网络能够对氧鎓离子样过渡态进行空间和静电稳定。在过渡态形成之前通过质子化激活离去基团是裂解N-糖苷键的酶反复出现的催化策略。然而,核苷水解酶中离去基团激活的潜在机制仍是争论的焦点。