Sokolov A V, Kostevich V A, Kozlov S O, Donskyi I S, Vlasova I I, Rudenko A O, Zakharova E T, Vasilyev V B, Panasenko O M
Department of Molecular Genetics, Research Institute of Experimental Medicine , Saint-Petersburg , Russia.
Free Radic Res. 2015 Jun;49(6):777-89. doi: 10.3109/10715762.2015.1017478. Epub 2015 Mar 20.
Myeloperoxidase (MPO) is a challenging molecular target which, if put under control, may allow regulating the development of inflammatory reactions associated with oxidative/halogenative stress. In this paper, a new kinetic method for assaying the halogenating activity of MPO is described. The method is based on measuring the rate of iodide-catalyzed oxidation of celestine blue B (CB) by oxygen and taurine N-chloramine (bromamine). The latter is produced in a reaction of taurine with HOCl (HOBr). CB is not a substrate for the peroxidase activity of MPO and does not react with hydrogen peroxide and superoxide anion radical. Taurine N-chloramine (bromamine) reacts with CB in molar ratio of 1:2. Using the new method, we studied the dependence of MPO activity on concentration of substrates and inhibitors. The specificity of MPO inhibition by non-proteolyzed ceruloplasmin is characterized. The inhibition of taurine N-chloramine production by neutrophils and HL-60 cells in the presence of MPO-affecting substances is demonstrated. The new method allows determining the kinetic parameters of MPO halogenating activity and studying its inhibition by various substances, as well as screening for potential inhibitors of the enzyme.
髓过氧化物酶(MPO)是一个具有挑战性的分子靶点,如果能对其进行调控,可能有助于调节与氧化/卤化应激相关的炎症反应的发展。本文描述了一种测定MPO卤化活性的新动力学方法。该方法基于测量碘化物催化氧气和牛磺酸N-氯胺(溴胺)氧化天青石蓝B(CB)的速率。后者是牛磺酸与HOCl(HOBr)反应生成的。CB不是MPO过氧化物酶活性的底物,也不与过氧化氢和超氧阴离子自由基反应。牛磺酸N-氯胺(溴胺)与CB的反应摩尔比为1:2。使用这种新方法,我们研究了MPO活性对底物和抑制剂浓度的依赖性。表征了非蛋白水解铜蓝蛋白对MPO抑制的特异性。证明了在存在影响MPO的物质时,中性粒细胞和HL-60细胞对牛磺酸N-氯胺产生的抑制作用。这种新方法可以确定MPO卤化活性的动力学参数,研究其被各种物质抑制的情况,以及筛选该酶的潜在抑制剂。