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首页> 外文期刊>BMC Microbiology >“Features of two proteins of Leptospira interrogans with potential role in host-pathogen interactions”
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“Features of two proteins of Leptospira interrogans with potential role in host-pathogen interactions”

机译:“问号钩端螺旋体的两种蛋白质的特征在宿主-病原体相互作用中具有潜在作用”

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Background Leptospirosis is considered a re-emerging infectious disease caused by pathogenic spirochaetes of the genus Leptospira. Pathogenic leptospires have the ability to survive and disseminate to multiple organs after penetrating the host. Leptospires were shown to express surface proteins that interact with the extracellular matrix (ECM) and to plasminogen (PLG). This study examined the interaction of two putative leptospiral proteins with laminin, collagen Type I, collagen Type IV, cellular fibronectin, plasma fibronectin, PLG, factor H and C4bp. Results We show that two leptospiral proteins encoded by LIC11834 and LIC12253 genes interact with laminin in a dose - dependent and saturable mode, with dissociation equilibrium constants (KD) of 367.5 and 415.4 nM, respectively. These proteins were named Lsa33 and Lsa25 (Leptospiral surface adhesin) for LIC11834 and LIC12253, respectively. Metaperiodate - treated laminin reduced Lsa25 - laminin interaction, suggesting that sugar moieties of this ligand participate in this interaction. The Lsa33 is also PLG - binding receptor, with a KD of 23.53 nM, capable of generating plasmin in the presence of an activator. Although in a weak manner, both proteins interact with C4bp, a regulator of complement classical route. In silico analysis together with proteinase K and immunoflorescence data suggest that these proteins might be surface exposed. Moreover, the recombinant proteins partially inhibited leptospiral adherence to immobilized laminin and PLG. Conclusions We believe that these multifunctional proteins have the potential to participate in the interaction of leptospires to hosts by mediating adhesion and by helping the bacteria to escape the immune system and to overcome tissue barriers. To our knowledge, Lsa33 is the first leptospiral protein described to date with the capability of binding laminin, PLG and C4bp in vitro.
机译:背景技术钩端螺旋体病被认为是由钩端螺旋体属的致病性螺旋体引起的再发传染病。致病性钩端螺旋体具有穿透宿主后能够存活并扩散到多个器官的能力。钩端螺旋体显示表达与细胞外基质(ECM)和纤溶酶原(PLG)相互作用的表面蛋白。这项研究检查了两种假定的钩端螺旋体蛋白与层粘连蛋白,I型胶原蛋白,IV型胶原蛋白,细胞纤连蛋白,血浆纤连蛋白,PLG,H因子和C4bp的相互作用。结果我们显示,LIC11834和LIC12253基因编码的两种钩端螺旋体蛋白与层粘连蛋白相互作用,呈剂量依赖性和饱和模式,解离平衡常数(K D )分别为367.5和415.4 nM。这些蛋白分别命名为LIC11834和LIC12253的Lsa33和Lsa25(Leptospiral表面粘附素)。偏高碘酸盐处理的层粘连蛋白降低了Lsa25层粘连蛋白的相互作用,表明该配体的糖部分参与该相互作用。 Lsa33也是PLG结合受体,K D 为23.53 nM,能够在存在激活剂的情况下产生纤溶酶。尽管这两种蛋白都以微弱的方式,但它们都与补体经典途径的调节剂C4bp相互作用。在计算机分析中与蛋白酶K和免疫荧光数据一起表明这些蛋白质可能是表面暴露的。此外,重组蛋白部分抑制了钩端螺旋体对固定层粘连蛋白和PLG的粘附。结论我们认为,这些多功能蛋白可能通过介导粘附并帮助细菌逃脱免疫系统和克服组织屏障,参与钩端螺旋体与宿主的相互作用。据我们所知,Lsa33是迄今为止描述的首个具有体外层粘连蛋白,PLG和C4bp结合能力的钩端螺旋体蛋白。

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