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肺炎链球菌组氨酸三聚体蛋白与人补体的相互作用。

Interaction of pneumococcal histidine triad proteins with human complement.

机构信息

National Institute for Health and Welfare, Department of Vaccination and Immune Protection, Mannerheimintie 166, 00300 Helsinki, Finland.

出版信息

Infect Immun. 2010 May;78(5):2089-98. doi: 10.1128/IAI.00811-09. Epub 2010 Mar 1.

Abstract

The pneumococcal histidine triad (Pht) proteins PhtA, PhtB, PhtD, and PhtE form a group of conserved pneumococcal surface proteins. Humans produce antibodies to Pht proteins upon exposure to pneumococcus, and immunization of mice has provided protective immunity against sepsis and pneumonia and reduced nasopharyngeal colonization. Pht proteins are candidates for inclusion in multicomponent pneumococcal protein vaccines. Their biological function in pneumococcal infections is not clear, but a role in complement inhibition has been suggested. We measured complement deposition on wild-type and Pht mutant strains in four genetic backgrounds: Streptococcus pneumoniae D39 (serotype 2) and R36A (unencapsulated derivative of D39) and strains of serotypes 3, 4, and 19F. PspA and PspC single and double mutants were compared to the wild-type and Pht-deficient D39 strains. Factor H binding was measured to bacterial cells, lysates, and protein antigens. Deletion of all four Pht proteins (Pht(-)) resulted in increased C3 deposition on the serotype 4 strain but not on the other strains. Pht antigens did not bind factor H, and deletion of Pht proteins did not affect factor H binding by bacterial lysates. The Pht(-) mutant serotype 4 strain bound slightly less factor H than the wild-type strain when binding was measured by flow cytometry. Pht proteins may play a role in immune evasion, but the mechanism of function is unlikely to be mediated by factor H binding. The relative contribution of Pht proteins to the inhibition of complement deposition is likely to be affected by the presence of other pneumococcal proteins and to depend on the genetic background.

摘要

肺炎球菌组氨酸三联体(Pht)蛋白 PhtA、PhtB、PhtD 和 PhtE 形成一组保守的肺炎球菌表面蛋白。人类在接触肺炎球菌后会产生针对 Pht 蛋白的抗体,而对小鼠进行免疫接种可提供针对败血症和肺炎的保护性免疫,并减少鼻咽部定植。Pht 蛋白是包含在多组分肺炎球菌蛋白疫苗中的候选物。它们在肺炎球菌感染中的生物学功能尚不清楚,但有人提出它们在抑制补体方面发挥作用。我们在四种遗传背景下测量了野生型和 Pht 突变菌株上补体的沉积:肺炎球菌 D39(血清型 2)和 R36A(D39 的无荚膜衍生物)以及血清型 3、4 和 19F 的菌株。将 PspA 和 PspC 单突变体和双突变体与野生型和 Pht 缺陷型 D39 菌株进行了比较。测量了细菌细胞、裂解物和蛋白质抗原上的因子 H 结合。删除所有四个 Pht 蛋白(Pht(-))导致血清型 4 菌株上 C3 沉积增加,但其他菌株上没有增加。Pht 抗原不结合因子 H,并且删除 Pht 蛋白不会影响细菌裂解物的因子 H 结合。与野生型菌株相比,通过流式细胞术测量时,Pht(-)突变血清型 4 菌株结合的因子 H 略少。Pht 蛋白可能在免疫逃避中发挥作用,但功能机制不太可能通过因子 H 结合来介导。Pht 蛋白对补体沉积抑制的相对贡献可能受到其他肺炎球菌蛋白的存在的影响,并取决于遗传背景。

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