Dong Ze-Yuan, Huang Xin, Mao Shi-Zhong, Liang Kai, Liu Jun-Qiu, Luo Gui-Min, Shen Jia-Cong
Key Laboratory for Supramolecular Structure and Materials of Ministry of Education, Jilin University, Changchun 130012, China.
Chemistry. 2006 Apr 24;12(13):3575-9. doi: 10.1002/chem.200501098.
To elucidate the relationships between molecular recognition and catalytic ability, we chose three assay systems using three different thiol substrates, glutathione (GSH), 3-carboxyl-4-nitrobenzenethiol (CNBSH), and 4-nitrobenzenethiol (NBSH), to investigate the glutathione peroxidase (GPx) activities of 2,2'-ditellurobis(2-deoxy-beta-cyclodextrin) (2-TeCD) in the presence of a variety of structurally distinct hydroperoxides (ROOH), H2O2, tert-butyl peroxide (tBuOOH), and cumene peroxide (CuOOH), as the oxidative reagent. A comparative study of the three assay systems revealed that the cyclodextrin moiety of the GPx mimic 2-TeCD endows the molecule with selectivity for ROOH and thiol substrates, and hydrophobic interactions are the most important driving forces in 2-TeCD complexation. Furthermore, in the novel NBSH assay system, 2-TeCD can catalyze the reduction of ROOH about 3.4 x 10(5) times more efficiently than diphenyl diselenide (PhSeSePh), and its second-order rate constants for thiol are similar to some of those of native GPx. This comparative study confirms that efficient binding of the substrate is essential for the catalytic ability of the GPx mimic, and that NBSH is the preferred thiol substrate of 2-TeCD among the chosen thiol substrates. Importantly, the proposed mode of action of 2-TeCD imitates the role played by several possible noncovalent interactions between enzymes and substrates in influencing catalysis and binding.
为阐明分子识别与催化能力之间的关系,我们选择了三种检测系统,使用三种不同的硫醇底物,即谷胱甘肽(GSH)、3 - 羧基 - 4 - 硝基苯硫酚(CNBSH)和4 - 硝基苯硫酚(NBSH),以研究在多种结构不同的氢过氧化物(ROOH)、过氧化氢(H₂O₂)、叔丁基过氧化氢(tBuOOH)和异丙苯过氧化氢(CuOOH)作为氧化试剂存在的情况下,2,2'-二碲双(2 - 脱氧 - β - 环糊精)(2 - TeCD)的谷胱甘肽过氧化物酶(GPx)活性。对这三种检测系统的比较研究表明,GPx模拟物2 - TeCD的环糊精部分赋予该分子对ROOH和硫醇底物的选择性,疏水相互作用是2 - TeCD络合中最重要的驱动力。此外,在新型NBSH检测系统中,2 - TeCD催化ROOH还原的效率比二苯基二硒化物(PhSeSePh)高约3.4×10⁵倍,其硫醇的二级速率常数与天然GPx的一些常数相似。这项比较研究证实,底物的有效结合对于GPx模拟物的催化能力至关重要,并且在所选硫醇底物中,NBSH是2 - TeCD的首选硫醇底物。重要的是,所提出的2 - TeCD的作用模式模仿了酶与底物之间几种可能的非共价相互作用在影响催化和结合方面所起的作用。