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使用293E表达系统生产和评估抗B型肉毒杆菌神经毒素的重组亚单位疫苗。

Production and evaluation of a recombinant subunit vaccine against botulinum neurotoxin serotype B using a 293E expression system.

作者信息

Yu YunZhou, Shi DanYang, Liu Si, Gong Zheng-Wei, Wang Shuang, Sun ZhiWei

机构信息

a Beijing Institute of Biotechnology ; Beijing , PR China.

出版信息

Hum Vaccin Immunother. 2015;11(2):468-73. doi: 10.4161/hv.29714.

Abstract

Although Escherichia coli and yeast were commonly used to express recombinant Hc of botulinum neurotoxins, as an alternative, in current study, a 293E expression system was used to express the Hc of botulinum neurotoxin serotype B (BHc) as soluble recombinant protein for experimental vaccine evaluation. Our results demonstrated that the 293E expression system could produce high level of recombinant secreted BHc protein, which was immunorecognized specifically by anti-botulinum neurotoxin serotype B (BoNT/B) sera and showed ganglioside binding activities. The serological response and efficacy of recombinant BHc formulated with aluminum hydroxide adjuvant were evaluated in mice. Immunization with Alhydrogel-formulated BHc subunit vaccine afforded the effective protection against BoNT/B challenge. A frequency- and dose-dependent effect to immunization with BHc subunit vaccine was observed and the ELISA antibody titers correlated well with neutralizing antibody titers and protection. And a solid-phase assay showed that the neutralizing antibodies from the BHc-immunized mice inhibited the binding of BHc to the ganglioside GT1b. Our results also show that the plasmid pABE293SBHc derived of the 293E expression system as DNA vaccine is capable of inducing stronger humoral response and protective efficacy against BoNT/B than the pVAX1SBHc. In summary, immunization with the 293E-expressed BHc protein generates effective immune protection against BoNT/B as E. coli or yeast-expressed BHc, so the efficient expression of botulinum Hc protein for experimental vaccine can be prepared using the 293E expression system.

摘要

尽管大肠杆菌和酵母常用于表达肉毒杆菌神经毒素的重链(Hc),但在本研究中,作为替代方法,采用了293E表达系统来表达B型肉毒杆菌神经毒素的Hc(BHc),作为可溶性重组蛋白用于实验性疫苗评估。我们的结果表明,293E表达系统能够产生高水平的重组分泌型BHc蛋白,该蛋白能被抗B型肉毒杆菌神经毒素(BoNT/B)血清特异性免疫识别,并具有神经节苷脂结合活性。对用氢氧化铝佐剂配制的重组BHc的血清学反应和效力在小鼠中进行了评估。用Alhydrogel配制的BHc亚单位疫苗免疫可有效抵抗BoNT/B攻击。观察到BHc亚单位疫苗免疫存在频率和剂量依赖性效应,ELISA抗体效价与中和抗体效价及保护作用密切相关。并且固相分析表明,来自BHc免疫小鼠的中和抗体抑制了BHc与神经节苷脂GT1b的结合。我们的结果还表明,源自293E表达系统的质粒pABE293SBHc作为DNA疫苗,比pVAX1SBHc能够诱导更强的体液反应和针对BoNT/B的保护效力。总之,用293E表达的BHc蛋白免疫可产生针对BoNT/B的有效免疫保护,如同大肠杆菌或酵母表达的BHc一样,因此可以使用293E表达系统制备用于实验性疫苗的肉毒杆菌Hc蛋白的高效表达产物。

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