Antonini G, Pitari G, Caccuri A M, Ricci G, Boschi D, Fruttero R, Gasco A, Ascenzi P
Dipartimento di Biologia di Base ed Applicata, Università di L'Aquila,Italy.
Eur J Biochem. 1997 May 1;245(3):663-7. doi: 10.1111/j.1432-1033.1997.00663.x.
The inhibition mechanism of the dimeric human placenta glutathione transferase (GST) P1-1 by calvatic acid and the reaction intermediates, i.e. the diazocyanide analogue of calvatic acid, has been investigated at pH 7.0 and 30.0 degrees C. Experiments performed at different molar ratios of inhibitor/GST P1-1 indicate that 1 mol calvatic acid inactivates 1 mol GST P1-1, containing two catalytically equivalent active sites. However, 2 mol of the diazocyanide analogue of calvatic acid inactivate 1 mol GST P1-1. Two disulfide bridges/dimer, probably between Cys47 and Cys101, have been formed during the reaction of GST P1-1 with calvatic acid and its diazocyanide analogue. The apparent second-order rate constants for GST P1-1 inactivation by calvatic acid and its diazocyanide analogue are 2.4+/-0.3 M(-1) s(-1) and (8.5+/-0.7) x 10(3) M(-1) s(-1), respectively. The reaction of calvatic acid with free L-cysteine can be described by a simple process with an apparent second-order rate constant of (5.0+/-0.4) x 10(1) M(-1) s(-1). In contrast, a transient species occurs during the reaction of the diazocyanide analogue of calvatic acid with free L-cysteine. Kinetics may be described by a second-order process [the rate constant being (8.0+/-0.5) x 10(3) M(-1) s(-1)] followed by a first-order decay [the rate constant corresponding to (1.2+/-0.1) x 10(1) s(-1)]. Calvatic acid represents an enzyme inhibitor acting much slower than its reaction intermediates (i.e. its diazocyanide analogue).
在pH 7.0和30.0℃条件下,研究了卡尔瓦酸及其反应中间体(即卡尔瓦酸的重氮氰化物类似物)对二聚体人胎盘谷胱甘肽转移酶(GST)P1-1的抑制机制。在不同抑制剂/GST P1-1摩尔比下进行的实验表明,1摩尔卡尔瓦酸使含有两个催化等效活性位点的1摩尔GST P1-1失活。然而,2摩尔卡尔瓦酸的重氮氰化物类似物使1摩尔GST P1-1失活。在GST P1-1与卡尔瓦酸及其重氮氰化物类似物的反应过程中,可能在Cys47和Cys101之间形成了两个二硫键/二聚体。卡尔瓦酸及其重氮氰化物类似物使GST P1-1失活的表观二级速率常数分别为2.4±0.3 M⁻¹ s⁻¹和(8.5±0.7)×10³ M⁻¹ s⁻¹。卡尔瓦酸与游离L-半胱氨酸的反应可以用一个简单的过程来描述,表观二级速率常数为(5.0±0.4)×10¹ M⁻¹ s⁻¹。相比之下,卡尔瓦酸的重氮氰化物类似物与游离L-半胱氨酸反应时会出现一个瞬态物种。动力学可以用一个二级过程(速率常数为(8.0±0.5)×10³ M⁻¹ s⁻¹)接着一个一级衰变(速率常数对应于(1.2±0.1)×10¹ s⁻¹)来描述。卡尔瓦酸是一种酶抑制剂,其作用比其反应中间体(即其重氮氰化物类似物)慢得多。