首页> 美国卫生研究院文献>Infection and Immunity >Outer surface protein C (OspC) but not P39 is a protective immunogen against a tick-transmitted Borrelia burgdorferi challenge: evidence for a conformational protective epitope in OspC.
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Outer surface protein C (OspC) but not P39 is a protective immunogen against a tick-transmitted Borrelia burgdorferi challenge: evidence for a conformational protective epitope in OspC.

机译:表面蛋白C(OspC)而不是P39是一种抵抗a传播的伯氏疏螺旋体挑战的保护性免疫原:OspC中构象保护性表位的证据。

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摘要

Outbred mice were immunized with the soluble fraction of a crude Escherichia coli lysate containing either recombinant outer surface protein C (OspC or P39 of Borrelia burgdorferi B31 (low passage). Following seroconversion, the mice were challenged with an infectious dose of B. burgdorferi B31 via the natural transmission mode of tick bite. Three mice immunized with P39 were not protected; however, all 12 of the recombinant OspC-immunized mice were protected from infection as assayed by culture and serology. Although OspC has been shown to be a protective immunogen against challenge with in vitro-cultured borrelia administered by needle, this study is the first to demonstrate OspC effectiveness against tick-borne spirochetes. Following feeding, all ticks still harbored B. burgdorferi, suggesting that the mechanism of protection is not linked to destruction of the infectious spirochete within the tick. In a separate experiment, groups of four mice were immunized with protein fractions from B. burgdorferi B31 purified by preparative gel electrophoresis in an attempt to identify potential protective antigens. Many of these mice developed high-titer-antibody responses against OspC, but curiously the mice were susceptible to B. burgdorferi infection via tick bite. These results suggest that the protective epitope(s) on OspC is heat sensitive/conformational, a finding which has implications in vaccine development.
机译:用含有重组外表面蛋白C(Borrelia burgdorferi B31的OspC或P39)(低传代)的粗制大肠杆菌裂解物的可溶级分对远交小鼠进行免疫。通过tick叮咬的自然传播方式,没有保护三只经P39免疫的小鼠;但是,通过培养和血清学分析,所有十二只经OspC免疫的重组小鼠均被保护免受感染,尽管已证明OspC是一种保护性免疫原。这项研究是首次证明OspC对tick传播的螺旋体具有抵抗OspC的功效,在喂食后所有all均仍带有B. burgdorferi,这表明该保护机制与破坏B. burgdorferi无关。在一个单独的实验中,每组四只小鼠用蛋白质级分免疫为了鉴定潜在的保护性抗原,通过制备性凝胶电泳纯化的来自B.burgdorferi B31的B31。这些小鼠中有许多对OspC产生了高滴度抗体应答,但奇怪的是,这些小鼠容易受到tick叮咬而感染伯氏疏螺旋体。这些结果表明,OspC上的保护性抗原决定簇是热敏感/构象性的,这一发现对疫苗的开发具有重要意义。

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