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Elevated A20 contributes to age-dependent macrophage dysfunction in the lungs

机译:升高的A20会导致年龄依赖性的肺巨噬细胞功能障碍

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摘要

Advanced age is associated with chronic low-grade inflammation (i.e. inflamm-aging) and poor macrophage function that includes a weak pro-inflammatory cytokine response to bacteria and diminished phagocytosis (i.e. age-dependent macrophage dysfunction [ADMD]). One reason for this is that ADMD is associated with poor NFκB and MAPK activation following Toll-like receptor stimulation ()()()[1][1][1](). Herein, we tested the hypothesis that inflamm-aging induces production of A20, a cytosolic and homeostatic suppressor of the NFκB and MAPK signaling cascades that deubiquitinates (i.e. inactivates) the common upstream signaling molecule TRAF6, and this is responsible for ADMD. Western blots and immunohistochemistry comparing tissues from young, mature, and aged C57BL/6 mice indicated that A20 was strongly elevated in the lungs of aged mice but not in other tissues. Elevated A20 was also detected in alveolar macrophages (AM) from aged mice. In contrast CYLD, a second deubiquitinase that also negatively regulates the NFκB pathway was decreased with aging. Following co-incubation of AM with the bacteria Streptococcus pneumoniae, TRAF6 polyubiquitination was diminished in AM isolated from aged versus young mice. A20 production was inducible in the J774A.1 macrophage cell line and C57BL/6 AM by overnight incubation with TNFα but not IL-6. Retrovirus-induced expression of A20 in J774A.1 cells resulted in their diminished production of IL-6 following exposure to S. pneumoniae but had no effect on levels of phagocytosis. Overnight incubation of AM from young mice with TNFα also resulted in a dampened IL-6 response to S. pneumoniae. Finally, dietary supplementation of aged mice with anti-inflammatory n-3 polyunsaturated fatty acids in the form of fish oil lowered lung A20 levels and enhanced resistance, including a 100-fold reduction in bacterial titers in the lungs, to experimental challenge with S. pneumoniae. We conclude that elevated A20 due to TNFα partially explains the ADMD phenotype and that ADMD is potentially reversible.
机译:高龄与慢性低度炎症(即炎症衰老)和巨噬细胞功能差有关,巨噬细胞功能包括对细菌的弱促炎细胞因子反应和吞噬作用减弱(即年龄依赖性巨噬细胞功能障碍[ADMD])。原因之一是ADMD与Toll样受体刺激()()()[1] [1] [1]()后不良的NFκB和MAPK活化有关。本文中,我们测试了以下假设:炎症衰老诱导了A20的产生,A20是NFκB和MAPK信号级联的胞质和稳态抑制剂,可去泛素化(即失活)常见的上游信号分子TRAF6,这是ADMD的原因。 Western印迹和免疫组织化学比较了年轻,成熟和老年C57BL / 6小鼠的组织,结果表明A20在老年小鼠的肺中强烈升高,而在其他组织中则没有。在衰老小鼠的肺泡巨噬细胞(AM)中也检测到A20升高。与之相反,CYLD的第二种去泛素酶也负调节NFκB途径,但随着年龄的增长而降低。在将AM与细菌肺炎链球菌共孵育后,TRAF6的多泛素化作用在从成年小鼠和年幼小鼠中分离出的AM中减少。通过与TNFα而非IL-6孵育过夜,可在J774A.1巨噬细胞和C57BL / 6 AM中诱导A20产生。逆转录病毒诱导的J774A.1细胞中A20的表达导致暴露于肺炎链球菌后其IL-6的产生减少,但对吞噬作用没有影响。将年轻小鼠的AM与TNFα隔夜孵育也导致IL-6对肺炎链球菌的反应减弱。最后,用鱼油形式的抗炎n-3多不饱和脂肪酸对老年小鼠进行饮食补充,降低了肺对A20水平的抵抗力,增强了抵抗力,其中包括肺中细菌滴度降低了100倍,从而抵抗了S的实验挑战。肺炎我们得出结论,由于TNFα引起的A20升高部分解释了ADMD表型,并且ADMD可能是可逆的。

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