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通过游离半胱氨酸残基突变在[具体表达缺失,可能是某种表达系统等]中生产具有更高活性和更低毒性的人铜锌超氧化物歧化酶

Production of Human Cu,Zn SOD with Higher Activity and Lower Toxicity in via Mutation of Free Cysteine Residues.

作者信息

Zhang Kun, Zhang Yuejuan, Zi Jing, Xue Xiaochang, Wan Yi

机构信息

Microbiology Institute of Shaanxi, Xi'an 710043, China.

State Key Laboratory of Cancer Biology, Department of Biopharmaceutics, School of Pharmacy, Fourth Military Medical University, Xi'an 710032, China.

出版信息

Biomed Res Int. 2017;2017:4817376. doi: 10.1155/2017/4817376. Epub 2017 Feb 16.

Abstract

Although, as an antioxidant enzyme, human Cu,Zn superoxide dismutase 1 (hSOD1) can mitigate damage to cell components caused by free radicals generated by aerobic metabolism, large-scale manufacturing and clinical use of hSOD1 are still limited by the challenge of rapid and inexpensive production of high-quality eukaryotic hSOD1 in recombinant forms. We have demonstrated previously that it is a promising strategy to increase the expression levels of soluble hSOD1 so as to increase hSOD1 yields in . In this study, a wild-type hSOD1 (wtSOD1) and three mutant SOD1s (mhSOD1s), in which free cysteines were substituted with serine, were constructed and their expression in soluble form was measured. Results show that the substitution of Cys111 (mhSOD1/C111S) increased the expression of soluble hSOD1 in whereas substitution of the internal Cys6 (mhSOD1/C6S) decreased it. Besides, raised levels of soluble expression led to an increase in hSOD1 yields. In addition, mhSOD1/C111S expressed at a higher soluble level showed lower toxicity and stronger whitening and antiradiation activities than those of wtSOD1. Taken together, our data demonstrate that C111S mutation in hSOD1 is an effective strategy to develop new SOD1-associated reagents and that mhSOD1/C111S is a satisfactory candidate for large-scale production.

摘要

尽管作为一种抗氧化酶,人铜锌超氧化物歧化酶1(hSOD1)可以减轻有氧代谢产生的自由基对细胞成分造成的损伤,但hSOD1的大规模制造和临床应用仍然受到以重组形式快速且廉价地生产高质量真核hSOD1这一挑战的限制。我们之前已经证明,提高可溶性hSOD1的表达水平以提高其产量是一种很有前景的策略。在本研究中,构建了野生型hSOD1(wtSOD1)和三个将游离半胱氨酸替换为丝氨酸的突变型SOD1(mhSOD1),并检测了它们的可溶性表达。结果表明,Cys111的替换(mhSOD1/C111S)提高了 中可溶性hSOD1的表达,而内部Cys6的替换(mhSOD1/C6S)则降低了其表达。此外,可溶性表达水平的提高导致hSOD1产量增加。另外,以较高可溶性水平表达的mhSOD1/C111S比wtSOD1表现出更低的毒性以及更强的美白和抗辐射活性。综上所述,我们的数据表明hSOD1中的C111S突变是开发新的SOD1相关试剂的有效策略,并且mhSOD1/C111S是大规模生产的理想候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a62/5337334/2c237aea1620/BMRI2017-4817376.001.jpg

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