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来自豌豆的一种高活性且稳定的叶绿体铜锌超氧化物歧化酶的异源表达及生化特性分析

Heterologous expression and biochemical characterization of a highly active and stable chloroplastic CuZn-superoxide dismutase from Pisum sativum.

作者信息

Tuteja Narendra, Mishra Panchanand, Yadav Sandep, Tajrishi Marjan, Baral Sudhir, Sabat Surendra Chandra

机构信息

Plant Molecular Biology Group, International Centre for Genetic Engineering and Biotechnology (ICGEB), Aruna Asaf Ali Marg, New Delhi, 110067, India.

Stress Biology Laboratory, Gene Function and Regulation, Institute of Life Sciences, Bhubaneswar, 751023, Odisha, India.

出版信息

BMC Biotechnol. 2015 Feb 8;15(1):3. doi: 10.1186/s12896-015-0117-0.

Abstract

BACKGROUND

CuZn-Superoxide dismutase (SOD) is a unique enzyme, which can catalyzes the dismutation of inevitable metabolic product i.e.; superoxide anion into molecular oxygen and hydrogen peroxide. The enzyme has gained wide interest in pharmaceutical industries due to its highly acclaimed antioxidative properties. The recombinant expression of this protein in its enzymatically active and stable form is highly desired and hence optimization of culture conditions and characterization of the related biochemical properties are essential to explore the significance of the enzyme in physiological, therapeutic, structural and transgenic research.

RESULTS

High-level expression of the chloroplastic isoform of Pisum sativum CuZn-SOD was achieved at 18°C, upon isopropyl β-D-1-thiogalactopyranoside induction and the process was optimized for maximum recovery of the protein in its soluble (enzymatically active) form. Both crude and purified protein fractions display significant increase in activity following supplementation of defined concentration Cu (CuSO4) and Zn (ZnSO4). Yield of the purified recombinant protein was ~ 4 mg L(-1) of culture volume and the bacterial biomass was ~ 4.5 g L(-1). The recombinant pea chloroplastic SOD was found to possess nearly 6 fold higher superoxide dismutase activity and the peroxidase activity was also 5 fold higher as compared to commercially available CuZn-superoxide dismutase. The computational, spectroscopic and biochemical characterization reveals that the protein harbors all the characteristics features of this class of enzyme. The enzyme was found to be exceptionally stable as evident from pH and temperature incubation studies and maintenance of SOD activity upon prolonged storage.

CONCLUSIONS

Overexpression and purification strategy presented here describes an efficient protocol for the production of a highly active and stable CuZn-superoxide dismutase in its recombinant form in E. coli system. The strategy can be utilized for the large-scale preparation of active CuZn-superoxide dismutase and thus it has wide application in pharmaceutical industries and also for elucidating the potential of this protein endowed with exceptional stability and activity.

摘要

背景

铜锌超氧化物歧化酶(SOD)是一种独特的酶,它能催化不可避免的代谢产物即超氧阴离子歧化为分子氧和过氧化氢。由于其备受赞誉的抗氧化特性,该酶在制药行业引起了广泛关注。非常希望以其酶活性和稳定形式重组表达这种蛋白质,因此优化培养条件并表征相关生化特性对于探索该酶在生理、治疗、结构和转基因研究中的意义至关重要。

结果

在18℃下,经异丙基β-D-1-硫代半乳糖苷诱导,实现了豌豆叶绿体同工型铜锌SOD的高水平表达,并且该过程针对以其可溶性(酶活性)形式最大程度回收蛋白质进行了优化。在添加确定浓度的铜(硫酸铜)和锌(硫酸锌)后,粗蛋白和纯化蛋白组分的活性均显著增加。纯化的重组蛋白产量约为每升培养体积4毫克,细菌生物量约为每升4.5克。与市售铜锌超氧化物歧化酶相比,重组豌豆叶绿体SOD的超氧化物歧化酶活性高出近6倍,过氧化物酶活性也高出5倍。计算、光谱和生化表征表明,该蛋白质具有这类酶的所有特征。从pH和温度孵育研究以及长期储存后SOD活性的维持可以明显看出,该酶异常稳定。

结论

本文提出的过表达和纯化策略描述了一种在大肠杆菌系统中以重组形式高效生产高活性和稳定铜锌超氧化物歧化酶的方案。该策略可用于大规模制备活性铜锌超氧化物歧化酶,因此在制药行业具有广泛应用,也可用于阐明这种具有卓越稳定性和活性的蛋白质的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9100/4333176/1e7a722af8dc/12896_2015_117_Fig1_HTML.jpg

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