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确定伯氏疏螺旋体毒力因子OspC在哺乳动物宿主中的需求。

Delineating the requirement for the Borrelia burgdorferi virulence factor OspC in the mammalian host.

作者信息

Stewart Philip E, Wang Xiaohui, Bueschel Dawn M, Clifton Dawn R, Grimm Dorothee, Tilly Kit, Carroll James A, Weis Janis J, Rosa Patricia A

机构信息

Laboratory of Zoonotic Pathogens, Rocky Mountain Laboratories, NIAID, NIH, 903 South 4th St., Hamilton, MT 59840, USA.

出版信息

Infect Immun. 2006 Jun;74(6):3547-53. doi: 10.1128/IAI.00158-06.

Abstract

We previously demonstrated that outer surface protein C (OspC) of Borrelia burgdorferi is essential for establishing mammalian infection. However, the role of OspC in mammalian infection is unknown. Here, we report experiments designed to distinguish between two models of OspC function in the mammalian host: (i) OspC fulfills an essential physiological role for growth and host adaptation or (ii) OspC provides a protective role for evasion of components of the innate immune response. We found that a B. burgdorferi ospC mutant, previously demonstrated to be noninfectious in both immunocompetent and SCID mice, could survive in the relatively immune-privileged environment of dialysis membrane chambers implanted within the peritoneum of a rat. The ospC mutant also adapts to the mammalian environment, as determined by the protein profiles of the chamber-cultivated spirochetes. Therefore, OspC does not appear to provide a physiological function for the survival of B. burgdorferi within the mammalian host. The second model, evasion of the innate immune system, was tested by assessing the infectivity of the ospC mutant in mice deficient for myeloid differentiation protein 88 (MyD88). Recent studies have shown that B. burgdorferi is prevented from reaching high cell numbers in the mammalian host by MyD88-dependent signaling pathways. The ospC mutant was incapable of infecting MyD88-deficient mice, suggesting that the role of OspC cannot be related solely to evasion of MyD88-mediated innate immunity. These results reiterate the importance of OspC in mammalian infection and eliminate simple models of function for this enigmatic protein.

摘要

我们之前证明,伯氏疏螺旋体的外表面蛋白C(OspC)对于建立哺乳动物感染至关重要。然而,OspC在哺乳动物感染中的作用尚不清楚。在此,我们报告了旨在区分OspC在哺乳动物宿主中的两种功能模型的实验:(i)OspC对生长和宿主适应起着至关重要的生理作用,或(ii)OspC为逃避先天免疫反应的成分提供保护作用。我们发现,一种伯氏疏螺旋体ospC突变体,之前已证明在免疫健全和SCID小鼠中均无感染性,但它能够在植入大鼠腹膜内的透析膜腔室这种相对免疫特权的环境中存活。通过腔室培养的螺旋体的蛋白质谱测定,ospC突变体也能适应哺乳动物环境。因此,OspC似乎并未为伯氏疏螺旋体在哺乳动物宿主体内生存提供生理功能。通过评估ospC突变体在髓样分化蛋白88(MyD88)缺陷小鼠中的感染性,对逃避先天免疫系统的第二种模型进行了测试。最近的研究表明,MyD88依赖的信号通路可阻止伯氏疏螺旋体在哺乳动物宿主体内达到高细胞数量。ospC突变体无法感染MyD88缺陷小鼠,这表明OspC的作用不能仅仅与逃避MyD88介导的先天免疫相关。这些结果重申了OspC在哺乳动物感染中的重要性,并排除了这种神秘蛋白质的简单功能模型。

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