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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >A Novel Interaction of Outer Membrane Protein A with C4b Binding Protein Mediates Serum Resistance of Escherichia coli K1
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A Novel Interaction of Outer Membrane Protein A with C4b Binding Protein Mediates Serum Resistance of Escherichia coli K1

机译:外膜蛋白A与C4b结合蛋白的新型相互作用介导了大肠杆菌K1的血清抗性。

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Escherichia coli is an important pathogen that causes meningitis in neonates. The development of bacteremia preceding the traversal across the blood-brain barrier is a prerequisite for this pathogen that obviously must survive the bactericidal activity of serum. Here we report that outer membrane protein A (OmpA) of Escherichia coli contributes to serum resistance by binding to C4b binding protein (C4bp), a complement fluid p9hase regulator. C4bp contains seven identical alpha-chains and one beta-chain linked together with disulfide bridges. We found that OmpA binds the alpha-chain of C4bp, which is composed of eight homologous complement control protein (CCP) modules. Binding studies using mutants of recombinant C4bp that lack one CCP at a time suggest that CCP3 is the major site of interaction with OmpA. Furthermore, we demonstrate that the N terminus of OmpA interacts with C4bp. Binding of C4bp to OmpA is not significantly inhibited in the presence of either C4b or heparin and is not salt sensitive, implying that it is hydrophobic in nature, suggesting a novel interaction between OmpA and C4bp. A compelling observation in this study is that synthetic peptides corresponding to CCP3 sequences block the binding of C4bp. A compelling observation in this study is that synthetic peptides corresponding to CCP3 sequences block the binding of C4bp to OmpA nad also significantly enhance serum bactericidal activity.
机译:大肠杆菌是引起新生儿脑膜炎的重要病原体。穿越血脑屏障之前发生菌血症是该病原体的先决条件,而该病原体显然必须能够承受血清的杀菌活性。在这里我们报告说,大肠杆菌的外膜蛋白A(OmpA)通过与补体液p9hase调节剂C4b结合蛋白(C4bp)结合而有助于血清抵抗。 C4bp包含7条相同的α-链和1条β-链与二硫键连接在一起。我们发现,OmpA结合了由四个同源补体控制蛋白(CCP)模块组成的C4bp的α链。使用一次缺少一个CCP的重组C4bp突变体进行的结合研究表明,CCP3是与OmpA相互作用的主要位点。此外,我们证明了OmpA的N末端与C4bp相互作用。在C4b或肝素的存在下,C4bp与OmpA的结合不会受到显着抑制,并且对盐不敏感,这意味着它本质上是疏水的,表明OmpA与C4bp之间存在新型相互作用。在这项研究中令人信服的观察是,对应于CCP3序列的合成肽可阻断C4bp的结合。在这项研究中令人信服的观察是,对应于CCP3序列的合成肽阻断了C4bp与OmpA nad的结合,也显着增强了血清杀菌活性。

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