首页> 美国卫生研究院文献>Infection and Immunity >Development of Non-Antibiotic-Resistant Chromosomally Based Constitutive and Inducible Expression Systems for aroA-Attenuated Salmonella enterica Serovar Typhimurium
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Development of Non-Antibiotic-Resistant Chromosomally Based Constitutive and Inducible Expression Systems for aroA-Attenuated Salmonella enterica Serovar Typhimurium

机译:aaroA减毒肠炎沙门氏菌鼠伤寒沙门氏菌的非抗生素抗性基于染色体的组成型和诱导性表达系统的开发。

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摘要

Live-vaccine delivery systems expressing two model antigens from Mycoplasma hyopneumoniae, F2P97 (Adh) and NrdF, were constructed using Salmonella enterica serovar Typhimurium aroA (STM-1), and immunogenicity in mice was evaluated. Recombinant plasmid-based expression (PBE) and chromosomally based expression (CBE) systems were constructed. The PBE system was formed by cloning both antigen genes into pJLA507 to create an operon downstream of temperature-inducible promoters. Constitutive CBE was achieved using a promoter-trapping technique whereby the promoterless operon was stably integrated into the chromosome of STM-1, and the expression of antigens was assessed. The chromosomal position of the operon was mapped in four clones. Inducible CBE was obtained by using the in vivo-induced sspA promoter and recombining the expression construct into aroD. Dual expression of the antigens was detected in all systems, with PBE producing much larger quantities of both antigens. The stability of antigen expression after in vivo passage was 100% for all CBE strains recovered. PBE and CBE strains were selected for comparison in a vaccination trial. The vaccine strains were delivered orally into mice, and significant systemic immunoglobulin M (IgM) and IgG responses against both antigens were detected among all CBE groups. No significant immune response was detected using PBE strains. Expression of recombinant antigens in S. enterica serovar Typhimurium aroA from chromosomally located strong promoters without the use of antibiotic resistance markers is a reliable and effective method of inducing a significant immune response.
机译:表达猪肺炎支原体血清鼠伤寒沙门氏菌aroA(STM-1)构建表达猪肺炎支原体F2P97(Adh)和NrdF两种模型抗原的活疫苗递送系统,并评估了小鼠的免疫原性。构建了基于重组质粒的表达(PBE)和基于染色体的表达(CBE)系统。通过将两个抗原基因克隆到pJLA507中以在温度诱导型启动子的下游创建操纵子来形成PBE系统。使用启动子捕获技术可实现组成型CBE,其中无启动子的操纵子被稳定整合到STM-1染色体中,并评估了抗原的表达。操纵子的染色体位置被定位在四个克隆中。通过使用体内诱导的sspA启动子并将表达构建体重组到aroD中,获得了可诱导的CBE。在所有系统中均检测到抗原的双重表达,而PBE则产生大量的两种抗原。对于所有回收的CBE菌株,体内传代后抗原表达的稳定性为100%。在疫苗接种试验中选择了PBE和CBE菌株进行比较。将该疫苗株口服递送至小鼠,并且在所有CBE组中检测到针对两种抗原的显着的全身免疫球蛋白M(IgM)和IgG应答。使用PBE菌株未检测到明显的免疫反应。在不使用抗生素抗性标记的情况下,由位于染色体上的强启动子在肠球菌血清鼠伤寒沙门氏菌aroA中表达重组抗原是诱导重要免疫反应的可靠且有效的方法。

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