Expression of a Novel HIV-1 Gag-Pol-Env-Nef-Rev Multi-Epitope Construct in Escherichia coli

E. Akbari, S. Ajdari, E. M. Ardakani, Elnaz Agi, V. Khalaj, A. Bolhassani
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Abstract

of multiepitope protein as an candidate to this study, the codon-optimized encoding sequence of the designed multi-epitope construct (Gag-Pol-Env-Nef-Rev) was synthesized and subcloned into the pET-24a (+) expression vector. Then, expression of the target antigen was evaluated in E. coli BL21 (DE3) and Rosetta strains under different conditions (temperature, optical density/ OD 600 , isopropyl β-D-1-thiogalactopyranoside (IPTG) concentration, and time). Finally, the expression of the Gag-Pol-Env-Nef-Rev multi-epitope protein was confirmed using SDS-PAGE and western blot analysis. Results: The highly conserved and immunodominant T-cell epitopes of HIV-1 Gag, Pol, Env, Nef, and Rev proteins were used to prepare a novel Gag-Pol-Env-Nef-Rev multi-epitope construct. The gag-pol-env-nef-rev gene was successfully sub-cloned in pET-24a (+) vector and subsequently expressed in BL21 (DE3) E. coli strain under optimized conditions (1 mM IPTG, 16 h post-induction, OD 600 = 0.6, and 37ºC). A clear band of ~ 35 kDa was detected by western blotting using an anti-His antibody, indicating the successful expression of our target multi-epitope protein. Conclusion: Expression of the recombinant HIV-1 multi-epitope protein was optimized in a bacterial system. The expressed protein will be purified to use as a multi-epitope protein vaccine candidate in the future.
新型HIV-1 Gag-Pol-Env-Nef-Rev多表位结构在大肠杆菌中的表达
将设计的多表位构建体的密码子优化编码序列(Gag-Pol-Env-Nef-Rev)合成并亚克隆到pET-24a(+)表达载体上。然后,在不同条件(温度、光密度/ OD值600、异丙基β- d -1-硫代半乳糖苷(IPTG)浓度和时间)下,评估目标抗原在大肠杆菌BL21 (DE3)和Rosetta菌株中的表达情况。最后,利用SDS-PAGE和western blot分析证实Gag-Pol-Env-Nef-Rev多表位蛋白的表达。结果:利用HIV-1 Gag、Pol、Env、Nef和Rev蛋白高度保守且具有免疫优势的t细胞表位,制备了Gag-Pol-Env-Nef-Rev多表位结构。gag-pol-env-nef-rev基因在pET-24a(+)载体上成功亚克隆,并在优化条件(1 mM IPTG,诱导后16 h, OD 600 = 0.6, 37℃)下在BL21 (DE3)大肠杆菌中表达。使用抗his抗体,western blotting检测到~ 35 kDa的清晰条带,表明我们的目标多表位蛋白成功表达。结论:重组HIV-1多表位蛋白在细菌系统中的表达得到优化。表达的蛋白将被纯化,将来用作多表位蛋白候选疫苗。
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