Biosynthesis of selenosubtilisin: A novel way to target selenium into the active site of subtilisin |
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Authors: | Jing Li XiaoMan Liu YueTong Ji ZhenHui Qi Yan Ge JiaYun Xu JunQiu Liu GuiMin Luo JiaCong Shen |
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Affiliation: | (1) State Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun, 130012, China;(2) Key Laboratory for Molecular Enzymology and Engineering of Ministry of Education, Jilin University, Changchun, 130023, China |
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Abstract: | Glutathione peroxidase (GPx, EC1.11.1.9), an important anti-oxidative selenoenzyme, can catalyze the reduction of harmful hydroperoxides with concomitant glutathione, thereby protecting cells and other biological issues against oxidative damage. It captures considerable interest in redesign of its function for either the mechanism study or the pharmacological development as an antioxidant. In order to de- velop a general strategy for specifically targeting and operating selenium in active sites of enzymes, the catalytically essential residue selenocysteine (Sec) was first successfully bioincorporated into the catalytic center of subtilisin by using an auxotrophic expression system. The studies of the catalytic activity and the steady-state kinetics demonstrated that selenosubtilisin is an excellent GPx-like bio- catalyst. In comparison with the chemically modified method, biosynthesis exhibits obvious advan- tages: Sec could be site-directly incorporated into active sites of enzymes to overcome the non-speci- ficity generated by chemical modification. This study provides an important strategy for specifically targeting and operating selenium in the active site of an enzyme. |
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Keywords: | cysteine auxotrophic expression system glutathione peroxidase selenocysteine selenosubtilisin selenium |
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