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首页> 外文期刊>Journal of land use science >Reduced inflammation and cytokine production in NKLAM deficient mice during Streptococcus pneumoniae infection
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Reduced inflammation and cytokine production in NKLAM deficient mice during Streptococcus pneumoniae infection

机译:在肺炎链球菌感染期间降低NKLAM缺陷小鼠的炎症和细胞因子产生

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摘要

Streptococcus pneumoniae is a leading cause of pneumonia and a significant economic burden. Antibiotic-resistant S. pneumoniae has become more prevalent in recent years and many pneumonia cases are caused by S. pneumoniae that is resistant to at least one antibiotic. The ubiquitin ligase natural killer lytic-associated molecule (NKLAM/RNF19b) plays a role in innate immunity and studies using NKLAM-knockout (NKLAM-KO) macrophages have demonstrated that NKLAM positively affects the transcriptional activity of STAT1. Using an inhalation infection model, we found that NKLAM-KO mice had a significantly higher lung bacterial load than WT mice but had less lung inflammation. Coincidently, NKLAM-KO mice had fewer neutrophils and NK cells in their lungs. NKLAM-KO mice also expressed less iNOS in their lungs as well as less MCP-1, MIP1 alpha, TNF alpha, IL-12, and IFN gamma. Both neutrophils and macrophages from NKLAM-KO mice were defective in killing S. pneumoniae as compared to wild type cells (WT). The phosphorylation of STAT1 and STAT3 in NKLAM-KO lungs was lower than in WT lungs at 24 hours post-infection. NKLAM-KO mice were afforded some protection against a lethal dose of S. pneumoniae compared to WT mice. In summary, our novel data demonstrate a role for E3 ubiquitin ligase NKLAM in modulating innate immunity via the positive regulation of inflammatory cytokine expression and bactericidal activity.
机译:肺炎链球菌是肺炎的主要原因和重大的经济负担。近年来,抗生素抗性S.肺炎已经变得更加普遍,并且许多肺炎病例是由肺炎患者抵抗至少一种抗生素引起的。泛素连接酶天然杀伤裂解性分子(NKLAM / RNF19B)在先天免疫和使用NKLAM-Knokeout(NKLAM-KO)巨噬细胞的研究中发挥了作用,表明NKLAM积极影响STAT1的转录活性。使用吸入感染模型,我们发现NKLAM-KO小鼠比WT小鼠具有显着更高的肺细菌载荷,但肺炎具有较小的肺炎。巧合地,NKLAM-KO小鼠在它们的肺中有更少的中性粒细胞和NK细胞。 NKLAM-KO小鼠在其肺部中也表达了较少的INOS以及较少的MCP-1,MIP1α,TNFα,IL-12和IFNγ。与野生型细胞(WT)相比,来自Nklam-Ko小鼠的中性粒细胞和来自Nklam-Ko小鼠的巨噬细胞缺血。在感染后24小时,NKLAM-KO肺中Stat1和Stat3的磷酸化低于24小时的WT肺。与WT小鼠相比,核心-KO小鼠的一些防止致死剂量的肺炎。总之,我们的新型数据显示了E3泛素连接酶NKLAM在通过炎性细胞因子表达和杀菌活性的正调节调节先天免疫的作用。

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