Mishra Balaram, Murthy Giridharan, Sahoo Bijayalaxmi, Uhm Sang Jun, Gupta Mukesh Kumar
Gene Manipulation Laboratory, Department of Biotechnology and Medical Engineering, National Institute of Technology Rourkela, Rourkela, Odisha, 769008, India.
Department of Animal Science, Sangji University, Wonju, 26339, South Korea.
Appl Microbiol Biotechnol. 2020 Nov;104(21):9135-9145. doi: 10.1007/s00253-020-10899-z. Epub 2020 Sep 18.
Human granulocyte colony-stimulating factor (hG-CSF) is a cytokine that regulates the proliferation, maturation, and differentiation of precursor cells to neutrophils. In the present study, we report the feasibility of inducing recombinant hG-CSF expression (rhG-CSF) in a pET vector system by combinatorial induction using low-concentration ethanol, IPTG, and lactose and auto-induction media (AIM). The coding sequence of hG-CSF transcript variant 2 was expressed in pET14 vector, and the effect of combinatorial induction was analyzed on inclusion body (IB) formation, biomass, protein purification, and bioactivity. Results showed that there was an inverse relationship between the temperature and soluble expression of rhG-CSF. Three-step washing with Triton-X, 2 M, and 5 M urea resulted in the maximum recovery of IBs. Combinatorial single-spike induction with IPTG, ethanol, and lactose in a batch culture led to a 3-fold increase in the expression of rhG-CSF. It was also observed that low concentration of ethanol (1-3% v/v) could be used in lieu of IPTG for inducing the rhG-CSF protein expression without adversely affecting biomass production. A 2.4-fold increase in productivity was obtained in LB-AIM media with combinatorial ethanol induction, and the overall yield of 2.8 g/L rhG-CSF was found. The purified rhG-CSF was bioactive and increased the cellular proliferation of umbilical cord blood-derived mesenchymal stem cells (U-MSC) by 29%. In conclusion, our study shows that combined ethanol induction can enhance the expression of rhG-CSF with three-step washing for recovery of the proteins from IBs and a single-step purification of rhG-CSF by affinity chromatography. KEY POINTS: • Low concentration of ethanol (1-3%) could be used in lieu of IPTG for inducing rhG-CSF expression. • Combinatorial single-spike induction with IPTG, ethanol, and lactose improved rhG-CSF expression. • Purified rhG-CSF was bioactive and increased the proliferation of U-MSC.
人粒细胞集落刺激因子(hG-CSF)是一种调节前体细胞向中性粒细胞增殖、成熟和分化的细胞因子。在本研究中,我们报告了通过使用低浓度乙醇、异丙基-β-D-硫代半乳糖苷(IPTG)、乳糖和自诱导培养基(AIM)进行组合诱导,在pET载体系统中诱导重组人粒细胞集落刺激因子(rhG-CSF)表达的可行性。hG-CSF转录变体2的编码序列在pET14载体中表达,并分析了组合诱导对包涵体(IB)形成、生物量、蛋白质纯化和生物活性的影响。结果表明,温度与rhG-CSF的可溶性表达呈负相关。用Triton-X、2M和5M尿素进行三步洗涤可使包涵体的回收率最高。在分批培养中用IPTG、乙醇和乳糖进行组合单峰诱导可使rhG-CSF的表达增加3倍。还观察到低浓度乙醇(1-3% v/v)可替代IPTG用于诱导rhG-CSF蛋白表达,而不会对生物量产生不利影响。在LB-AIM培养基中进行组合乙醇诱导可使生产力提高2.4倍,rhG-CSF的总产量达到2.8 g/L。纯化后的rhG-CSF具有生物活性,可使脐带血来源的间充质干细胞(U-MSC)的细胞增殖增加29%。总之,我们的研究表明,组合乙醇诱导可增强rhG-CSF的表达,通过三步洗涤从包涵体中回收蛋白质,并通过亲和色谱法对rhG-CSF进行一步纯化。要点:• 低浓度乙醇(1-3%)可替代IPTG用于诱导rhG-CSF表达。• 用IPTG、乙醇和乳糖进行组合单峰诱导可提高rhG-CSF的表达。• 纯化后的rhG-CSF具有生物活性,可增加U-MSC的增殖。