Al-Timari A, Douglas K T
Biochim Biophys Acta. 1986 Mar 7;870(1):160-8. doi: 10.1016/0167-4838(86)90020-8.
A series of twelve S-blocked and N,S-blocked glutathione derivatives has been studied as inhibitors of glyoxalase I [R)-S-lactoylglutathione methylglyoxal-lyase (isomerising), EC 4.4.1.5) from human erythrocytes. A number of new N,S-blocked glutathiones have been synthesised. Inhibition at pH 7.0, 25 degrees C was linear-competitive in all cases and the Ki values were interpreted in terms of the absence of a specific binding interaction for the N-site of the inhibitor and the absence of coupling between binding processes at N- and S-sites (the regions around the NH2 and HS groups, respectively, of GSH analogues bound to enzyme). These observations are in strong contrast to previous results with the yeast enzyme. Some Ki values were measured for yeast glyoxalase I. A special binding interaction of the phenyl groups with enzyme from both species was found for glutathione derivatives with N-acyl groups of structure -NH X CO X X X Y X Ph but not for -NH X COPh, where X and Y were variously -CH2-, -NH- and -O-. Studies were made of the range of stability of human erythrocyte glyoxalase I to pH. The pH profiles for the Ki values of S-p-bromobenzyl)glutathione and N-acetyl-S-(p-bromobenzyl)glutathione indicated no pH dependence for the latter and little, if any, for the former inhibitor. The mean Ki over the pH range 5-8.5 for S-(p-bromobenzyl)glutathione was 1.21 +/- 0.37 microM and for N-acetyl-S-(p-bromobenzyl)glutathione in the same pH range, Ki decreased from 1.45 +/- 0.26 microM to 0.88 +/- 0.11 M.
研究了一系列12种S-封闭和N、S-封闭的谷胱甘肽衍生物作为人红细胞乙二醛酶I[(R)-S-乳酰谷胱甘肽甲基乙二醛裂解酶(异构化),EC 4.4.1.5]抑制剂的情况。合成了许多新的N、S-封闭的谷胱甘肽。在pH 7.0、25℃下的抑制作用在所有情况下均呈线性竞争,并且根据抑制剂的N位点不存在特异性结合相互作用以及N和S位点(分别为与酶结合的谷胱甘肽类似物的NH2和HS基团周围区域)的结合过程之间不存在偶联来解释Ki值。这些观察结果与先前对酵母酶的研究结果形成强烈对比。还测定了酵母乙二醛酶I的一些Ki值。对于结构为-NH X CO X X X Y X Ph的N-酰基谷胱甘肽衍生物,发现苯基与两种物种的酶存在特殊结合相互作用,但对于-NH X COPh则没有,其中X和Y分别为-CH2-、-NH-和-O-。研究了人红细胞乙二醛酶I对pH的稳定性范围。S-(对溴苄基)谷胱甘肽和N-乙酰基-S-(对溴苄基)谷胱甘肽的Ki值的pH曲线表明,后者对pH无依赖性,而前者抑制剂即使有也很小。在pH 5-8.5范围内,S-(对溴苄基)谷胱甘肽的平均Ki为1.21±0.37 microM,在相同pH范围内,N-乙酰基-S-(对溴苄基)谷胱甘肽的Ki从1.45±0.26 microM降至0.88±0.11 microM。