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以甲型流感病毒A/波多黎各/8/1934 H1N1血凝素胞外域为流感疫苗抗原模型,在二硫键异构酶引导下进行细菌表达的重折叠产物的生成。

Generation of a DSF-Guided Refolded Bacterially Expressed Hemagglutinin Ectodomain of Influenza Virus A/Puerto Rico/8/1934 H1N1 as a Model for Influenza Vaccine Antigens.

作者信息

Tofan Vlad-Constantin, Ermeneanu Andreea-Laura, Caraș Iuliana, Lenghel Alina, Ionescu Irina-Elena, Țucureanu Cătălin, Gal Claudiu, Stăvaru Crina-Georgeta, Onu Adrian

机构信息

"Cantacuzino" Institute, 050096 Bucharest, Romania.

Faculty of Pharmacy, Titu Maiorescu University, 040317 Bucharest, Romania.

出版信息

Vaccines (Basel). 2023 Sep 24;11(10):1520. doi: 10.3390/vaccines11101520.

Abstract

Influenza virus infections represent an ongoing public health threat as well as an economic burden. Although seasonal influenza vaccines have been available for some decades, efforts are being made to generate new efficient, flexible, and cost-effective technologies to be transferred into production. Our work describes the development of a model influenza hemagglutinin antigen that is capable of inducing protection against viral challenge in mice. High amounts of the H1 hemagglutinin ectodomain, HA, were expressed in a bacterial system as insoluble inclusion bodies. Solubilization was followed by a thorough differential scanning fluorimetry (DSF)-guided optimization of refolding, which allows for fast and reliable screening of several refolding conditions, yielding tens of milligrams/L of folded protein. Structural and functional analysis revealed native-like folding as well as the presence of a mix of monomers and oligomers in solution. Mice immunized with HA were protected when exposed to influenza A virus as opposed to mice that received full-length denatured protein. Sera of mice immunized with HA showed both high titers of antigen-specific IgG1 and IgG2a isotypes as well as viral neutralization activity. These results prove the feasibility of the recombinant bacterial expression system coupled with DSF-guided refolding in providing influenza hemagglutinin for vaccine development.

摘要

流感病毒感染对公共卫生构成持续威胁,也是一项经济负担。尽管季节性流感疫苗已问世数十年,但人们仍在努力研发新的高效、灵活且具有成本效益的技术,以便投入生产。我们的研究描述了一种模型流感血凝素抗原的开发情况,该抗原能够诱导小鼠对病毒攻击产生保护作用。大量的H1血凝素胞外域(HA)在细菌系统中表达为不溶性包涵体。溶解后进行了全面且基于差示扫描荧光法(DSF)指导的复性优化,这使得能够快速可靠地筛选多种复性条件,从而获得每升数十毫克的折叠蛋白。结构和功能分析表明,其折叠状态类似天然状态,且溶液中存在单体和寡聚体的混合物。与接受全长变性蛋白的小鼠不同,用HA免疫的小鼠在接触甲型流感病毒时受到了保护。用HA免疫的小鼠血清显示出高滴度的抗原特异性IgG1和IgG2a同种型以及病毒中和活性。这些结果证明了重组细菌表达系统结合DSF指导的复性为疫苗开发提供流感血凝素的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0852/10610769/6ef385d35eb6/vaccines-11-01520-g001.jpg

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