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芳基硫醇底物3-羧基-4-硝基苯硫醇强烈刺激谷胱甘肽过氧化物酶模拟物2,2'-二碲双(2-脱氧-β-环糊精)的硫醇过氧化物酶活性。

Aryl thiol substrate 3-carboxy-4-nitrobenzenethiol strongly stimulating thiol peroxidase activity of glutathione peroxidase mimic 2, 2'-ditellurobis(2-deoxy-beta-cyclodextrin).

作者信息

Dong Zeyuan, Liu Junqiu, Mao Shizhong, Huang Xin, Yang Bing, Ren Xiaojun, Luo Guimin, Shen Jiacong

机构信息

Key Laboratory for Supramolecular Structure and Materials of Ministry of Education, Jilin University, Changchun 130012, Peoples Republic of China.

出版信息

J Am Chem Soc. 2004 Dec 22;126(50):16395-404. doi: 10.1021/ja045964v.

Abstract

Artificial glutathione peroxidase (GPx) model 2, 2'-ditellurobis(2-deoxy-beta-cyclodextrin) (2-TeCD) which has the desirable properties exhibited high substrate specificity and remarkably catalytic efficiency when 3-carboxy-4-nitrobenzenethiol (ArSH) was used as a preferential thiol substrate. The complexation of ArSH with beta-cyclodextrin was investigated through UV spectral titrations, fluorescence spectroscopy, 1H NMR and molecular simulation, and these results indicated that ArSH fits well to the size of the cavity of beta-cyclodextrin. Furthermore, 2-TeCD was found to catalyze the reduction of cumene peroxide (CuOOH) by ArSH 200,000-fold more efficiently than diphenyl diselenide (PhSeSePh). Its steady-state kinetics was studied and the second rate constant kmax/KArSH was found to be 1.05 x 10(7) M(-1) min(-1) and similar to that of natural GPx. Moreover, the kinetic data revealed that the catalytic efficiency of 2-TeCD depended strongly upon the competitive recognition of both substrates for 2-TeCD. The catalytic mechanism of 2-TeCD catalysis agreed well with a ping-pong mechanism, in analogy with natural GPx, and might exert its thiol peroxidase activity via tellurol, tellurenic acid, and tellurosulfide.

摘要

人工谷胱甘肽过氧化物酶(GPx)模型2,2'-二碲双(2-脱氧-β-环糊精)(2-TeCD)具有理想的性质,当使用3-羧基-4-硝基苯硫醇(ArSH)作为优先硫醇底物时,表现出高底物特异性和显著的催化效率。通过紫外光谱滴定、荧光光谱、1H NMR和分子模拟研究了ArSH与β-环糊精的络合作用,这些结果表明ArSH与β-环糊精的腔尺寸匹配良好。此外,发现2-TeCD催化ArSH还原过氧化氢异丙苯(CuOOH)的效率比二苯基二硒醚(PhSeSePh)高200,000倍。研究了其稳态动力学,发现二级速率常数kmax/KArSH为1.05×10(7) M(-1) min(-1),与天然GPx相似。此外,动力学数据表明2-TeCD的催化效率强烈依赖于两种底物对2-TeCD的竞争性识别。与天然GPx类似,2-TeCD催化的催化机制与乒乓机制一致,可能通过亚碲醇、亚碲酸和碲硫醚发挥其硫醇过氧化物酶活性。

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