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研究一种具有 GPx 和 SOD 双重功能的 65 肽模拟酶。

Study on a 65-mer peptide mimetic enzyme with GPx and SOD dual function.

机构信息

Research Center for Analytical Instrumentation, Institute of Cyber-Systems and Control, State Key Laboratory of Industrial Control Technology, Zhejiang University, Hangzhou, China.

Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, College of Life Science, Jilin University, Changchun, China.

出版信息

J Mol Recognit. 2018 Aug;31(8):e2714. doi: 10.1002/jmr.2714. Epub 2018 Apr 15.

Abstract

Excessive reactive oxygen species (ROS) levels are harmful to the body. The peroxidase, GPx, and the superoxide dismutase, SOD, are important antioxidant enzymes for preventing ROS-induced damage. Se-CuZn-65P is an enzyme mimetic with dual GPx and SOD antioxidant function. However, currently, its production is mainly based on the cysteine auxotrophic expression technique, which is inefficient, expensive, and time consuming. In this study, we combined protein engineering and the chemical mutation method to synthesize Se-CuZn-65P. The DNA sequence encoding the 65 amino acid peptide with the desired sequence transformations to incorporate the SOD and the GPx catalytic sites was cloned and expressed in a soluble protein expression vector. The protein yield increased up to 152 mg/L, which is 10 times higher than in previous studies. The SOD and GPx activity of Se-CuZn-65P was high (1181 U/mg and 753 U/μmol, respectively). The binding constant of glutathione was 5.6 × 10  L·mol , which shows that Se-CuZn-65P efficiently catalyzed hydrogen peroxide reduction by glutathione. Mitochondrial damage experiments confirmed the double protective role of the Se-CuZn-65P peptide and demonstrated functional synergy between the SOD and the GPx domains, which indicates its potential to be used in the treatment of ROS-related diseases. Our research may give a new thought to increase the yield of mimic.

摘要

过量的活性氧(ROS)水平对身体有害。过氧化物酶(GPx)和超氧化物歧化酶(SOD)是预防 ROS 诱导损伤的重要抗氧化酶。Se-CuZn-65P 是一种具有双重 GPx 和 SOD 抗氧化功能的酶模拟物。然而,目前其生产主要基于半胱氨酸营养缺陷型表达技术,该技术效率低、成本高且耗时。在这项研究中,我们结合蛋白质工程和化学诱变方法合成了 Se-CuZn-65P。克隆并表达了编码具有所需序列转换的 65 个氨基酸肽的 DNA 序列,以纳入 SOD 和 GPx 催化位点。蛋白质产量增加到 152mg/L,比以前的研究高 10 倍。Se-CuZn-65P 的 SOD 和 GPx 活性很高(分别为 1181U/mg 和 753U/μmol)。谷胱甘肽的结合常数为 5.6×10 L·mol -1 ,表明 Se-CuZn-65P 能有效地催化谷胱甘肽还原过氧化氢。线粒体损伤实验证实了 Se-CuZn-65P 肽的双重保护作用,并证明了 SOD 和 GPx 结构域之间的功能协同作用,表明其在治疗与 ROS 相关的疾病方面具有潜力。我们的研究可能为提高模拟物的产量提供新的思路。

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