van Zanden Jelmer J, Ben Hamman Omar, van Iersel Marlou L P S, Boeren Sjef, Cnubben Nicole H P, Lo Bello Mario, Vervoort Jacques, van Bladeren Peter J, Rietjens Ivonne M C M
Division of Toxicology, Wageningen University, Tuinlaan 5, 6703 HE Wageningen, The Netherlands.
Chem Biol Interact. 2003 May 6;145(2):139-48. doi: 10.1016/s0009-2797(02)00250-8.
In the present study, the inhibition of human glutathione S-transferase P1-1 (GSTP1-1) by the flavonoid quercetin has been investigated. The results show a time- and concentration-dependent inhibition of GSTP1-1 by quercetin. GSTP1-1 activity is completely inhibited upon 1 h incubation with 100 microM quercetin or 2 h incubation with 25 microM quercetin, whereas 1 and 10 microM quercetin inhibit GSTP1-1 activity to a significant extent reaching a maximum of 25 and 42% inhibition respectively after 2 h. Co-incubation with tyrosinase greatly enhances the rate of inactivation, whereas co-incubation with ascorbic acid or glutathione prevents this inhibition. Addition of glutathione upon complete inactivation of GSTP1-1 partially restores the activity. Inhibition studies with the GSTP1-1 mutants C47S, C101S and the double mutant C47S/C101S showed that cysteine 47 is the key residue in the interaction between quercetin and GSTP1-1. HPLC and LC-MS analysis of trypsin digested GSTP1-1 inhibited by quercetin did not show formation of a covalent bond between Cys 47 residue of the peptide fragment 45-54 and quercetin. It was demonstrated that the inability to detect the covalent quercetin-peptide adduct using LC-MS is due to the reversible nature of the adduct-formation in combination with rapid and preferential dimerization of the peptide fragment once liberated from the protein. Nevertheless, the results of the present study indicate that quinone-type oxidation products of quercetin likely act as specific active site inhibitors of GSTP1-1 by binding to cysteine 47.
在本研究中,对黄酮类化合物槲皮素抑制人谷胱甘肽S-转移酶P1-1(GSTP1-1)进行了研究。结果表明,槲皮素对GSTP1-1的抑制具有时间和浓度依赖性。用100μM槲皮素孵育1小时或用25μM槲皮素孵育2小时后,GSTP1-1活性被完全抑制,而1μM和10μM槲皮素在很大程度上抑制GSTP1-1活性,2小时后分别达到最大抑制率25%和42%。与酪氨酸酶共同孵育可大大提高失活速率,而与抗坏血酸或谷胱甘肽共同孵育可防止这种抑制作用。在GSTP1-1完全失活后加入谷胱甘肽可部分恢复其活性。对GSTP1-1突变体C47S、C101S和双突变体C47S/C101S的抑制研究表明,半胱氨酸47是槲皮素与GSTP1-1相互作用中的关键残基。对经槲皮素抑制的胰蛋白酶消化的GSTP1-1进行HPLC和LC-MS分析,未显示肽片段45-54的半胱氨酸47残基与槲皮素之间形成共价键。结果表明,使用LC-MS无法检测到共价槲皮素-肽加合物是由于加合物形成的可逆性,以及肽片段一旦从蛋白质中释放出来就迅速且优先二聚化。然而,本研究结果表明,槲皮素的醌型氧化产物可能通过与半胱氨酸47结合而作为GSTP1-1的特异性活性位点抑制剂。