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在大肠杆菌中过表达、过量生产、纯化和鉴定 rhGH。

Overexpression, overproduction, purification, and characterization of rhGH in Escherichia coli.

机构信息

Faculty of Chemistry and Chemical Engineering, Malek Ashtar University of Technology, Tehran, Iran.

出版信息

Biotechnol Appl Biochem. 2021 Feb;68(1):122-135. doi: 10.1002/bab.1902. Epub 2020 May 17.

Abstract

Overexpression of insoluble human growth hormone (hGH) in cytoplasm was achieved by E. coli Rosetta-gami B(DE3) [pET21a (+)-hGH]). For overexpression of hGH, effects of eight factors including temperature, type and concentration of carbon source, IPTG and MgSO , buffering capacity, induction time, yeast extract/peptone ratio on rhGH production were studied by Plackett-Burman screening. Maximum production of rhGH was 0.681 g/L, and results of statistical analysis showed that induction temperature and glucose have the greatest effect and the presence of MgSO increases rhGH expression and reduces biomass concentration. So, the effect of ethanol and MgSO concentrations on the rhGH production was examined according to the central composite experimental design. The ANOVA of the results showed rhGH production increases to 1.128 g/L in 4 g/L MgSO and 1% ethanol. Then, the impact of glucose concentration and induction time on the rhGH production was evaluated in two levels in the fermenter by Taguchi statistical method. Under optimum conditions, OD 4 and 10 g/L glucose crude rhGH concentration 4.17 g/L was obtained, which is one of the highest value ever reported. Finally, rhGH was purified using the biophysical and biochemical techniques comprising circular dichroism, fluorescent spectroscopy, and dynamic light scattering, and it was confirmed that the produced protein is comparable to the commercial standard sample.

摘要

通过大肠杆菌 Rosetta-gami B(DE3)[pET21a(+)-hGH]实现了不溶性人生长激素(hGH)在细胞质中的过表达。为了过表达 hGH,通过 Plackett-Burman 筛选研究了 8 种因素对 rhGH 生产的影响,包括温度、碳源类型和浓度、IPTG 和 MgSO4、缓冲能力、诱导时间、酵母提取物/蛋白胨比。rhGH 的最大产量为 0.681 g/L,统计分析结果表明,诱导温度和葡萄糖的影响最大,而 MgSO4 的存在增加了 rhGH 的表达并降低了生物量浓度。因此,根据中心组合实验设计研究了乙醇和 MgSO4 浓度对 rhGH 生产的影响。结果的方差分析表明,在 4 g/L MgSO4 和 1%乙醇中,rhGH 产量增加到 1.128 g/L。然后,通过 Taguchi 统计方法在发酵罐中在两个水平上评估了葡萄糖浓度和诱导时间对 rhGH 生产的影响。在最佳条件下,获得了 OD4 和 10 g/L 葡萄糖粗 rhGH 浓度为 4.17 g/L,这是以往报道的最高值之一。最后,使用包括圆二色性、荧光光谱和动态光散射在内的生物物理和生化技术对 rhGH 进行了纯化,并证实所产生的蛋白质与商业标准样品相当。

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