Metts Michael S, McDowell John V, Theisen Michael, Hansen Paul Robert, Marconi Richard Thomas
Department of Microbiology and Immunology, Medical College of Virginia at Virginia Commonwealth University, Richmond 23298-0678, USA.
Infect Immun. 2003 Jun;71(6):3587-96. doi: 10.1128/IAI.71.6.3587-3596.2003.
Immune evasion by Lyme spirochetes is a multifactorial process involving numerous mechanisms. The OspE protein family undergoes antigenic variation during infection and binds factor H (fH) and possibly FHL-1/reconectin. In Borrelia burgdorferi B31MI, the OspE family consists of three paralogs: BBL39 (ErpA), BBP38, and BBN38 (ErpP). BBL39 and BBP38 are identical and therefore are referred to here as BBL39. The goals of this study were to assess the specificity of the antibody (Ab) response to the OspE paralogs and to identify the domains or determinants of OspE that are required for the binding of fH and OspE-targeting Abs that develop during infection. Here we demonstrate that at least some of the anti-OspE Abs produced during infection are paralog specific and that Ab binding requires conformational determinants whose formation requires both the N- and C-terminal domains of OspE. The binding of fH to OspE was also found to be dependent on conformational determinants. It is also demonstrated here that all of the OspE paralogs expressed by B. burgdorferi B31MI are capable of binding fH. The binding of fH to members of the OspF protein family was also assessed. In contrast to an earlier report, no binding of BBO39 or BBR42 to human fH was detected. Lastly, a series of competitive binding enzyme-linked immunosorbent assay analyses, designed to determine if fH and infection serum Abs bind to the same sites on OspE, revealed that these ligands interact with different regions of OspE.
莱姆螺旋体的免疫逃逸是一个涉及多种机制的多因素过程。OspE蛋白家族在感染期间会发生抗原变异,并结合补体因子H(fH)以及可能的FHL-1/重组连接蛋白。在伯氏疏螺旋体B31MI中,OspE家族由三个旁系同源物组成:BBL39(ErpA)、BBP38和BBN38(ErpP)。BBL39和BBP38是相同的,因此在这里将它们统称为BBL39。本研究的目的是评估抗体(Ab)对OspE旁系同源物反应的特异性,并确定fH结合以及感染期间产生的靶向OspE的抗体所必需的OspE结构域或决定簇。在这里,我们证明感染期间产生的至少一些抗OspE抗体是旁系同源物特异性的,并且抗体结合需要构象决定簇,其形成需要OspE的N端和C端结构域。还发现fH与OspE的结合依赖于构象决定簇。这里还证明了伯氏疏螺旋体B31MI表达的所有OspE旁系同源物都能够结合fH。还评估了fH与OspF蛋白家族成员的结合。与早期报告相反,未检测到BBO39或BBR42与人fH的结合。最后,一系列竞争性结合酶联免疫吸附测定分析旨在确定fH和感染血清抗体是否结合到OspE上的相同位点,结果显示这些配体与OspE的不同区域相互作用。