Bhaumik D, Datta A K
Leishmania Group, Indian Institute of Chemical Biology, Calcutta, India.
Mol Biochem Parasitol. 1988 Apr;28(3):181-7. doi: 10.1016/0166-6851(88)90002-3.
The reaction kinetics and the inhibitor specificity of adenosine kinase (ATP:adenosine 5'-phosphotransferase, EC 2.7.1.20) from Leishmania donovani, have been analysed using homogeneous preparation of the enzyme. The reaction proceeds with equimolar stoichiometry of each reactant. Double reciprocal plots of initial velocity studies in the absence of products yielded intersecting lines for both adenosine and Mg2+-ATP. AMP is a competitive inhibitor of the enzyme with respect to adenosine and noncompetitive inhibitor with respect to ATP. In contrast, ADP was a noncompetitive inhibitor with respect to both adenosine and ATP, with inhibition by ADP becoming uncompetitive at very high concentration of ATP. Parallel equilibrium dialysis experiments against [3H]adenosine and [gamma-32P]ATP resulted in binding of adenosine to fre enzyme. Tubercidin (7-deazaadenosine) and 6-methyl-mercaptopurine riboside acted as substrates for the enzyme and were found to inhibit adenosine phosphorylation competitively in vitro. 'Substrate efficiency (Vmax/Km)' and 'turnover numbers (Kcat)' of the enzyme with respect to specific analogs were determined. Taken together the results suggest that (a) the kinetic mechanism of adenosine kinase is sequential Bi-Bi, (b) AMP and ADP may regulate enzyme activity in vivo and (c) tubercidin and 6-methylmercaptopurine riboside are monophosphorylated by the parasite enzyme.
利用杜氏利什曼原虫腺苷激酶(ATP:腺苷5'-磷酸转移酶,EC 2.7.1.20)的均一制剂,分析了该酶的反应动力学和抑制剂特异性。反应以每种反应物等摩尔化学计量比进行。在无产物存在下进行的初始速度研究的双倒数图显示,腺苷和Mg2+-ATP的曲线均相交。AMP是该酶对腺苷的竞争性抑制剂,对ATP是非竞争性抑制剂。相反,ADP对腺苷和ATP均为非竞争性抑制剂,在ATP浓度非常高时,ADP的抑制作用变为反竞争性。针对[3H]腺苷和[γ-32P]ATP进行的平行平衡透析实验表明,腺苷与游离酶结合。杀结核菌素(7-脱氮腺苷)和6-甲基巯基嘌呤核苷作为该酶的底物,在体外发现它们竞争性抑制腺苷磷酸化。测定了该酶对特定类似物的“底物效率(Vmax/Km)”和“转换数(Kcat)”。综合这些结果表明:(a)腺苷激酶的动力学机制为有序的双底物双产物机制;(b)AMP和ADP可能在体内调节酶活性;(c)杀结核菌素和6-甲基巯基嘌呤核苷可被寄生虫酶单磷酸化。