首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Deciphering the Ligand-binding Sites in the Borrelia burgdorferi Complement Regulator-acquiring Surface Protein 2 Required for Interactions with the Human Immune Regulators Factor H and Factor H-like Protein 1
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Deciphering the Ligand-binding Sites in the Borrelia burgdorferi Complement Regulator-acquiring Surface Protein 2 Required for Interactions with the Human Immune Regulators Factor H and Factor H-like Protein 1

机译:破译伯氏疏螺旋体中的配体结合位点 相互作用所需的补体调节剂获取表面蛋白2 与人类免疫调节因子H和类因子H蛋白 1个

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摘要

Borrelia burgdorferi, the etiologic agent of Lyme disease, employs sophisticated means to evade killing by its mammalian hosts. One important immune escape mechanism is the inhibition of complement activation mediated by interactions of the host-derived immune regulators factor H (CFH) and factor H-like protein 1 (CFHL1) with borrelial complement regulator-acquiring surface proteins (BbCRASPs). BbCRASP-2 is a distinctive CFH- and CFHL1-binding protein that is produced by serum-resistant B. burgdorferi strains. Here we show that binding of CFH by BbCRASP-2 is due to electrostatic as well as hydrophobic forces. In addition, 14 individual amino acid residues of BbCRASP-2 were identified as being involved in CFH and CFHL1 binding. Alanine substitutions of most of those residues significantly inhibited binding of CFH and/or CFHL1 by recombinant BbCRASP-2 proteins. To conclusively define the effects of BbCRASP-2 residue substitutions on serum sensitivity in the bacterial context, a serum-sensitive Borrelia garinii strain was transformed with plasmids that directed production of either wild-type or mutated BbCRASP-2 proteins. Critical amino acid residues within BbCRASP-2 were identified, with bacteria producing distinct mutant proteins being unable to bind either CFH or CFHL1, showing high levels of complement components C3, C6, and C5b-9 deposited on their surfaces and being highly sensitive to killing by normal serum. Collectively, we mapped a structurally sensitive CFH/CFHL1 binding site within borrelial BbCRASP-2 and identified single amino acid residues potentially involved in the interaction with both complement regulators.
机译:莱姆病的病原体伯氏疏螺旋体采用复杂的手段来逃避其哺乳动物宿主的杀害。一种重要的免疫逃逸机制是抑制宿主激活的免疫调节因子H(CFH)和因子H样蛋白1(CFHL1)与获得补体调节因子的表面蛋白(BbCRASPs)相互作用介导的补体激活。 BbCRASP-2是一种独特的CFH-和CFHL1结合蛋白,由抗血清的伯氏疏螺旋体菌株产生。在这里,我们显示BbCRASP-2结合CFH是由于静电力和疏水力。另外,鉴定出BbCRASP-2的14个单独的氨基酸残基与CFH和CFHL1结合有关。这些残基中的大多数残基的丙氨酸取代均显着抑制了重组BbCRASP-2蛋白与CFH和/或CFHL1的结合。为了最终确定BbCRASP-2残基取代对细菌环境中血清敏感性的影响,用指导野生型或突变型BbCRASP-2蛋白生产的质粒转化了血清敏感型疏螺旋体。鉴定出BbCRASP-2中的关键氨基酸残基,产生不同突变蛋白的细菌无法 结合CFH或CFHL1,显示补体成分C3,C6, 和C5b-9沉积在它们的表面上,并且对被 正常血清。我们共同绘制了结构敏感的CFH / CFHL1 硼酸BbCRASP-2中的结合位点和已鉴定的单个氨基酸 可能与两个补体相互作用的残基 监管机构。

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