首页> 外文OA文献 >In Vivo Clearance of an Intracellular Bacterium, Francisella tularensis LVS, Is Dependent on the p40 Subunit of Interleukin-12 (IL-12) but Not on IL-12 p70
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In Vivo Clearance of an Intracellular Bacterium, Francisella tularensis LVS, Is Dependent on the p40 Subunit of Interleukin-12 (IL-12) but Not on IL-12 p70

机译:胞内细菌弗朗西斯菌tularensis LVS的体内清除取决于白介素12(IL-12)的p40亚基,但不依赖于IL-12 p70

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摘要

To determine the role of interleukin-12 (IL-12) in primary and secondary immunity to a model intracellular bacterium, we have comprehensively evaluated infection with Francisella tularensis LVS in three murine models of IL-12 deficiency. Mice lacking the p40 protein of IL-12 (p40 knockout [KO] mice) and mice treated in vivo with neutralizing anti-IL-12 antibodies survived large doses of primary and secondary LVS infection but never cleared bacteria and exhibited a chronic infection. In dramatic contrast, mice lacking the p35 protein (p35 KO mice) of heterodimeric IL-12 readily survived large doses of primary sublethal LVS infection as well as maximal secondary lethal challenge, with only a slight delay in clearance of bacteria. LVS-immune wild-type (WT) lymphocytes produced large amounts of gamma interferon (IFN-γ), but p35 KO and p40 KO lymphocytes produced much less; nonetheless, similar amounts of NO were found in all cultures containing immune lymphocytes, and all immune lymphocytes were equally capable of controlling intracellular growth of LVS in vitro. Purified CD4+ and CD8+ T cells from both WT and p40 KO mice controlled intracellular growth, even though T cells from WT mice produced much more IFN-γ than those from p40 KO mice, and p40 KO T cells did not adopt a Th2 phenotype. Thus, while IL-12 p70 stimulation of IFN-γ production may be important for bacteriostasis, IL-12 p70 is not necessary for appropriate development of LVS-immune T cells that are capable of controlling intracellular bacterial growth and for clearance of primary or secondary LVS infection. Instead, an additional mechanism dependent on the IL-12 p40 protein, either alone or in another complex such as the newly discovered heterodimer IL-23, appears to be responsible for actual clearance of this intracellular bacterium.
机译:为了确定白细胞介素12(IL-12)在对模型细胞内细菌的一级和二级免疫中的作用,我们在三种IL-12缺乏症鼠模型中全面评估了土拉弗朗西斯菌对LVS的感染。缺乏IL-12 p40蛋白的小鼠(p40敲除[KO]小鼠)和体内用中和性抗IL-12抗体治疗的小鼠在大剂量的原发和继发LVS感染中存活下来,但从未清除细菌,也没有表现出慢性感染。与之形成鲜明对比的是,缺乏异二聚体IL-12的p35蛋白的小鼠(p35 KO小鼠)在大剂量的原发性亚致死性LVS感染以及最大的继发致命性攻击中均能幸存下来,而细菌清除仅稍有延迟。免疫LVS的野生型(WT)淋巴细胞产生大量的γ-干扰素(IFN-γ),但p35 KO和p40 KO淋巴细胞产生的γ-干扰素少得多。然而,在所有含有免疫淋巴细胞的培养物中都发现了相似量的NO,并且所有免疫淋巴细胞同样具有体外控制LVS细胞内生长的能力。 WT和p40 KO小鼠的纯化CD4 +和CD8 + T细胞控制细胞内生长,即使WT小鼠的T细胞比p40 KO小鼠产生的IFN-γ多得多,并且p40 KO T细胞没有Th2表型。因此,尽管IL-12 p70刺激IFN-γ的产生对于抑菌可能很重要,但IL-12 p70对于适当发育能控制细胞内细菌生长的LVS免疫T细胞和清除原发或继发细胞并不是必需的LVS感染。取而代之的是,依赖于IL-12 p40蛋白的另一种机制,无论是单独还是在另一种复合物中,如新发现的异二聚体IL-23,似乎都可以真正清除这种细胞内细菌。

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