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基于二级和三级胺的谷胱甘肽过氧化物酶模拟物的合成及构效关系研究。

Synthesis and structure-activity correlation studies of secondary- and tertiary-amine-based glutathione peroxidase mimics.

机构信息

Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560 012, India.

出版信息

Chemistry. 2009 Sep 28;15(38):9846-54. doi: 10.1002/chem.200900818.

Abstract

In this study, a series of secondary- and tertiary-amino-substituted diaryl diselenides were synthesized and studied for their glutathione peroxidase (GPx) like antioxidant activities with H(2)O(2), cumene hydroperoxide, or tBuOOH as substrates and with PhSH or glutathione (GSH) as thiol cosubstrates. This study reveals that replacement of the tert-amino groups in benzylamine-based diselenides by sec-amino moieties drastically enhances the catalytic activities in both the aromatic thiol (PhSH) and GSH assay systems. Particularly, the N-propyl- and N-isopropylamino-substituted diselenides are 8-18 times more active than the corresponding N,N-dipropyl- and N,N-diisopropylamine-based compounds in all three peroxide systems when GSH is used as the thiol cosubstrate. Although the catalytic mechanism of sec-amino-substituted diselenides is similar to that of the tert-amine-based compounds, differences in the stability and reactivity of some of the key intermediates account for the differences in the GPx-like activities. It is observed that the sec-amino groups are better than the tert-amino moieties for generating the catalytically active selenols. This is due to the absence of any significant thiol-exchange reactions in the selenenyl sulfides derived from sec-amine-based diselenides. Furthermore, the seleninic acids (RSeO(2)H) derived from the sec-amine-based compounds are more stable toward further reactions with peroxides than their tert-amine-based analogues.

摘要

在这项研究中,合成了一系列二级和三级氨取代的二芳基二硒化物,并研究了它们作为谷胱甘肽过氧化物酶 (GPx) 样抗氧化剂的活性,以 H(2)O(2)、枯烯氢过氧化物或 tBuOOH 为底物,以 PhSH 或谷胱甘肽 (GSH) 为硫醇共底物。本研究表明,用仲氨基取代苄胺基二硒化物中的叔氨基基团会极大地增强其在芳香族硫醇 (PhSH) 和 GSH 测定体系中的催化活性。特别是,当 GSH 用作硫醇共底物时,N-丙基-和 N-异丙基取代的二硒化物在所有三种过氧化物体系中比相应的 N,N-二丙基-和 N,N-二异丙基胺基化合物的活性高 8-18 倍。尽管仲氨基取代的二硒化物的催化机制与叔胺基化合物相似,但一些关键中间体的稳定性和反应性的差异导致了 GPx 样活性的差异。观察到,与叔胺基团相比,仲氨基基团更有利于生成催化活性的硒醇。这是因为仲胺基二硒化物衍生的硒代亚砜中不存在任何显著的硫醇交换反应。此外,与叔胺基类似物相比,仲胺基化合物衍生的亚硒酸 (RSeO(2)H) 对与过氧化物的进一步反应更稳定。

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