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Biosynthesis of selenosubtilisin: A novel way to target selenium into the active site of subtilisin

机译:硒代枯草杆菌蛋白酶的生物合成:一种将硒靶向到枯草杆菌蛋白酶活性位点的新方法

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摘要

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 develop 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 biocatalyst. In comparison with the chemically modified method, biosynthesis exhibits obvious advantages: Sec could be site-directly incorporated into active sites of enzymes to overcome the non-specificity generated by chemical modification. This study provides an important strategy for specifically targeting and operating selenium in the active site of an enzyme.
机译:谷胱甘肽过氧化物酶(GPx,EC1.11.1.9),一种重要的抗氧化硒酶,可以催化有害的氢过氧化物与谷胱甘肽的还原反应,从而保护细胞和其他生物免受氧化损伤。对于机理研究或作为抗氧化剂的药理学开发,其重新设计功能引起了极大的兴趣。为了制定在酶的活性位点中特异性靶向和操作硒的一般策略,首先使用营养缺陷型表达系统将催化必需残基硒代半胱氨酸(Sec)成功地生物掺入枯草杆菌蛋白酶的催化中心。催化活性和稳态动力学的研究表明硒代枯草杆菌蛋白酶是一种出色的GPx样生物催化剂。与化学修饰方法相比,生物合成具有明显的优势:Sec可以位点直接掺入酶的活性位点,以克服化学修饰产生的非特异性。这项研究为在酶的活性位点特异性靶向和操作硒提供了重要的策略。

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