首页> 外文期刊>Infection and immunity >Fine-Tuning Synthesis of Yersinia pestis LcrV from Runaway-Like Replication Balanced-Lethal Plasmid in a Salmonella enterica Serovar Typhimurium Vaccine Induces Protection against a Lethal Y. pestis Challenge in Mice
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Fine-Tuning Synthesis of Yersinia pestis LcrV from Runaway-Like Replication Balanced-Lethal Plasmid in a Salmonella enterica Serovar Typhimurium Vaccine Induces Protection against a Lethal Y. pestis Challenge in Mice

机译:沙门氏菌鼠伤寒鼠伤寒沙门氏菌疫苗的失控样复制平衡致死质粒中的鼠疫耶尔森菌LcrV的微调合成诱导小鼠抵抗鼠疫耶尔森氏菌的致死性保护。

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A balanced-lethal plasmid expression system that switches from low-copy-number to runaway-like high-copy-number replication (pYA4534) was constructed for the regulated delayed in vivo synthesis of heterologous antigens by vaccine strains. This is an antibiotic resistance-free maintenance system containing the asdA gene (essential for peptidoglycan synthesis) as a selectable marker to complement the lethal chromosomal ΔasdA allele in live recombinant attenuated Salmonella vaccines (RASVs) such as Salmonella enterica serovar Typhimurium strain χ9447. pYA4534 harbors two origins of replication, pSC101 and pUC (low and high copy numbers, respectively). The pUC replication origin is controlled by a genetic switch formed by the operator/promoter of the P22 cro gene (O/Pcro) (PR), which is negatively regulated by an arabinose-inducible P22 c2 gene located on both the plasmid and the chromosome (araC PBAD c2). The absence of arabinose, which is unavailable in vivo, triggers replication to a high-copy-number plasmid state. To validate these vector attributes, the Yersinia pestis virulence antigen LcrV was used to develop a vaccine against plague. An lcrV sequence encoding amino acids 131 to 326 (LcrV196) was optimized for expression in Salmonella, flanked with nucleotide sequences encoding the signal peptide (SS) and the carboxy-terminal domain (CT) of β-lactamase, and cloned into pYA4534 under the control of the Ptrc promoter to generate plasmid pYA4535. Our results indicate that the live Salmonella vaccine strain χ9447 harboring pYA4535 efficiently stimulated a mixed Th1/Th2 immune response that protected mice against lethal challenge with Y. pestis strain CO92 introduced through either the intranasal or subcutaneous route.
机译:构建了从低拷贝数复制到失控样高拷贝数复制(pYA4534)的平衡致死质粒表达系统,用于疫苗株对异源抗原的调节延迟体内合成。这是一个无抗生素抗性的维持系统,包含asdA基因(肽聚糖合成所必需)作为选择标记,以补充活的重组减毒沙门氏菌疫苗(RASV)中的致死染色体ΔasdA等位基因,如肠道沙门氏菌血清鼠伤寒沙门氏菌菌株χ9447。 pYA4534具有两个复制起点,即pSC101和pUC(分别为低拷贝数和高拷贝数)。 pUC复制起点是由P22 cro基因(O / Pcro)(PR)的操纵子/启动子形成的遗传开关控制的,该开关受到位于质粒和染色体上的阿拉伯糖诱导型P22 c2基因的负调控。 (araC PBAD c2)。体内无法获得的阿拉伯糖的缺乏会触发复制到高拷贝数质粒状态。为了验证这些载体的属性,鼠疫耶尔森氏菌毒力抗原LcrV被用于开发抗鼠疫疫苗。优化了编码131至326位氨基酸(lcrV196)的lcrV序列,以在沙门氏菌中表达,其侧翼是编码β-内酰胺酶的信号肽(SS)和羧基末端结构域(CT)的核苷酸序列,然后在控制Ptrc启动子以产生质粒pYA4535。我们的结果表明,带有pYA4535的沙门氏菌活疫苗菌株χ9447有效地刺激了混合的Th1 / Th2免疫应答,从而保护了小鼠免受通过鼻内或皮下途径引入的鼠疫耶尔森氏菌CO92的致命攻击。

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