首页> 美国卫生研究院文献>Pathogens >Heterologous Expression of the Pathogen-Specific LIC11711 Gene in the Saprophyte L. biflexa Increases Bacterial Binding to Laminin and Plasminogen
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Heterologous Expression of the Pathogen-Specific LIC11711 Gene in the Saprophyte L. biflexa Increases Bacterial Binding to Laminin and Plasminogen

机译:异源特异性LiC11711基因在藏霉素L. Biflexa中的异源表达增加了与层粘连蛋白和纤溶酶原的细菌结合

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摘要

Leptospirosis is a febrile disease and the etiological agents are pathogenic bacteria of the genus . The leptospiral virulence mechanisms are not fully understood and the application of genetic tools is still limited, despite advances in molecular biology techniques. The leptospiral recombinant protein LIC11711 has shown interaction with several host components, indicating a potential function in virulence. This study describes a system for heterologous expression of the gene using the saprophyte serovar Patoc as a surrogate, aiming to investigate its possible activity in bacterial virulence. Heterologous expression of LIC11711 was performed using the pMaOri vector under regulation of the promoter. The protein was found mainly on the leptospiral outer surface, confirming its location. The promoter enhanced the expression of LIC11711 in compared to the pathogenic strain, indicating that this strategy may be used to overexpress low-copy proteins. The presence of LIC11711 enhanced the capacity of to adhere to laminin (Lam) and plasminogen (Plg)/plasmin (Pla) in vitro, suggesting the involvement of this protein in bacterial pathogenesis. We show for the first time that the expression of LIC11711 protein of confers a virulence-associated phenotype on , pointing out possible mechanisms used by pathogenic leptospires.
机译:钩端螺旋体病是一种发热性疾病,病因制剂是属的致病细菌。尽管分子生物学技术进展,但舌骨血管毒力机制仍然有限,遗传工具的应用仍然有限。乳化血重组蛋白LiC11711显示了与几个宿主组分的相互作用,表明毒力的潜在功能。该研究描述了使用Saprophyte Serovar Patoc作为替代物的基因异源表达的系统,旨在研究其在细菌毒力中的可能活性。使用促进剂调节下的PMAORI载体进行LIC11711的异源表达。该蛋白质主要在乳化水外表面上发现,确认其位置。促进剂与致病菌株相比,增强了LIC11711的表达,表明该策略可用于过表达低拷贝蛋白质。 LIC11711的存在增强了粘附到层状蛋白(LAM)和纤溶酶原(PLG)/纤溶酶(PLG)/纤溶酶(PLA)的容量,表明该蛋白质在细菌发病机制中的累积。我们首次展示了赋予毒性相关表型的LiC11711蛋白的表达,指出了致病性铰接型器的可能机制。

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