Seyfi Roghayyeh, Babaeipour Valiollah, Mofid Mohammad Reza, Kahaki Fatemeh Abarghooi
Department of Bioscience and Biotechnology, Malek Ashtar University of Technology, Tehran, Iran.
Department of Biochemistry, Bioinformatics Research Center, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran.
Biotechnol Appl Biochem. 2019 Jan;66(1):119-129. doi: 10.1002/bab.1704. Epub 2018 Nov 12.
Scorpine is a cationic protein from the venom of Pandinus imperator, belonging to potassium channel blocker family, which has been shown to have antibacterial, antiviral, and antiplasmodia activities. In the present study, a pET-44a vector containing scorpine synthetic gene with T7 Promoter (pET 44a-His6-Nus-His6-tev-scorpine) was transferred into Escherichia coli Rosetta-gami B (DE3) for soluble expression of the protein in the cytoplasm and its overproduction. After confirming recombinant scorpine peptide expression using SDS-PAGE and Western blot, augmentation of production was performed during two stages. At first, effects of three parameters including carbon source concentration of medium, temperature, and induction time were investigated in terrific broth (TB) medium. Afterward, the overexpression was performed by response surface methodology in TB + glucose. Under the optimized conditions, the highest production of 3.5 g/L in the TB + glucose medium (7.5 g/L glucose, induction at OD = 3.5 and 25 °C) was increased to 4.1 g/L in TB medium (2.5 g/L glycerol, induction at OD = 0.7 and 25 °C). Then, in order to increase the amount of protein production, effects of carbon concentration in the fermenter under the primary optimized condition was investigated. The amount of produced recombinant protein increased from 0.12 to 2.1 g/L.H. The results were similar to previous studies on optimizing and increasing the production of recombinant protein and in particular recombinant scorpine.
蝎毒素是帝王蝎毒液中的一种阳离子蛋白,属于钾通道阻滞剂家族,已被证明具有抗菌、抗病毒和抗疟原虫活性。在本研究中,将含有蝎毒素合成基因且带有T7启动子的pET-44a载体(pET 44a-His6-Nus-His6-tev-蝎毒素)转入大肠杆菌Rosetta-gami B(DE3),以便在细胞质中实现该蛋白的可溶性表达及其过量生产。使用SDS-PAGE和蛋白质免疫印迹法确认重组蝎毒素肽表达后,在两个阶段进行产量提高。首先,在 terrific肉汤(TB)培养基中研究了包括培养基碳源浓度、温度和诱导时间这三个参数的影响。之后,通过响应面法在TB+葡萄糖培养基中进行过表达。在优化条件下,TB+葡萄糖培养基(7.5 g/L葡萄糖,OD=3.5时诱导,25℃)中的最高产量3.5 g/L提高到了TB培养基(2.5 g/L甘油,OD=0.7时诱导,25℃)中的4.1 g/L。然后,为了增加蛋白质产量,研究了在初步优化条件下发酵罐中碳浓度的影响。重组蛋白产量从0.12 g/L提高到了2.1 g/L。结果与之前关于优化和提高重组蛋白尤其是重组蝎毒素产量的研究相似。