人参
超氧化物歧化酶
分子生物学
表达式向量
大肠杆菌
紫胶操纵子
化学
基因表达
亲和层析
重组DNA
生物化学
黄嘌呤氧化酶
基因
酶
生物
替代医学
医学
病理
作者
Hongmei Lin,Ze-Yu Wang,Yue Shao,Xiao-Ye Qin,Shichao Liu,Xin Zhang,Limin Yang
标识
DOI:10.4268/cjcmm20132312
摘要
The total RNA was extracted from ginseng leaves of Panax ginseng. The Cu/Zn-SOD gene was amplified via RT-PCR and the pET-28(a)-Cu/Zn-SOD expression vector was constructed. The pET-28 (a)-Cu/Zn-SOD recombinant plasmid was transformed into Escherichia coli BL21 (DE3) competent cells and was induced by IPTG in order to select optimal induction of expression conditions. The target protein was purified by the nickel ions (Ni ) affinity chromatography and the target protein enzyme activity was determinated by the xanthine oxidase method. The similarity of the Cu/Zn-SOD gene sequences and the Cu/Zn-SOD gene sequences of Korean ginseng in NCBI was 99. 00%. The target protein expression level was about 44.42%, and the molecular weight was 16.30 kDa after the pET-28(a)-Cu/Zn-SOD recombinants were induced by IPTG. The purified Cu/Zn-SOD protease activity reached 10,596.69 U x mg(-1). The P. ginseng pET-28(a)-Cu/Zn-SOD prokaryotic expression vector was built by the method of molecular biology, which provided the foundation for studying the Cu/Zn-SOD biology function.
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