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HDAC6 controls innate immune and autophagy responses to TLR-mediated signalling by the intracellular bacteria Listeria monocytogenes

机译:HDAC6控制细胞内细菌单核细胞增生性李斯特菌对TLR介导的信号的先天免疫和自噬反应

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Recent evidence on HDAC6 function underlines its role as a key protein in the innate immune response to viral infection. However, whether HDAC6 regulates innate immunity during bacterial infection remains unexplored. To assess the role of HDAC6 in the regulation of defence mechanisms against intracellular bacteria, we used the Listeria monocytogenes (Lm) infection model. Our data show that Hdac6-/- bone marrow-derived dendritic cells (BMDCs) have a higher bacterial load than Hdac6+/+ cells, correlating with weaker induction of IFN-related genes, pro-inflammatory cytokines and nitrite production after bacterial infection. Hdac6-/- BMDCs have a weakened phosphorylation of MAPK signalling in response to Lm infection, suggesting altered Toll-like receptor signalling (TLR). Compared with Hdac6+/+ counterparts, Hdac6-/- GM-CSF-derived and FLT3L-derived dendritic cells show weaker pro-inflammatory cytokine secretion in response to various TLR agonists. Moreover, HDAC6 associates with the TLR-adaptor molecule Myeloid differentiation primary response gene 88 (MyD88), and the absence of HDAC6 seems to diminish the NF-κB induction after TLR stimuli. Moreover, Hdac6-/- mice display low serum levels of inflammatory cytokine IL-6 and correspondingly an increased survival to a systemic infection with Lm. The impaired bacterial clearance in the absence of HDAC6 appears to be caused by a defect in autophagy. Hence, Hdac6-/- BMDCs accumulate higher levels of the autophagy marker p62 and show defective phagosome-lysosome fusion. These data underline the important function of HDAC6 in dendritic cells not only in bacterial autophagy, but also in the proper activation of TLR signalling. These results thus demonstrate an important regulatory role for HDAC6 in the innate immune response to intracellular bacterial infection.
机译:关于HDAC6功能的最新证据强调了其作为病毒感染的先天免疫应答中的关键蛋白的作用。然而,HDAC6是否在细菌感染过程中调节先天免疫尚待探索。为了评估HDAC6在调节针对细胞内细菌的防御机制中的作用,我们使用了单核细胞增生李斯特菌(Lm)感染模型。我们的数据显示,Hdac6-/-骨髓源性树突状细胞(BMDC)具有比Hdac6 + / +细胞更高的细菌载量,与细菌感染后与IFN相关基因,促炎细胞因子和亚硝酸盐生成的诱导作用弱相关。 Hdac6-/-BMDC对Lm感染具有减弱的MAPK信号磷酸化作用,提示Toll样受体信号转导(TLR)发生了改变。与Hdac6 + / +同行相比,Hdac6-/-GM-CSF衍生的和FLT3L衍生的树突状细胞在响应各种TLR激动剂时显示出较弱的促炎细胞因子分泌。此外,HDAC6与TLR适配器分子髓样分化初级反应基因88(MyD88)关联,并且缺少HDAC6似乎减少了TLR刺激后NF-κB的诱导。而且,Hdac6-/-小鼠表现出低水平的炎性细胞因子IL-6,并相应地增加了Lm全身感染的存活率。在缺少HDAC6的情况下,细菌清除能力受损似乎是由于自噬缺陷引起的。因此,Hdac6-/-BMDC积累更高水平的自噬标记p62,并显示缺陷的吞噬体-溶酶体融合。这些数据强调了HDAC6在树突状细胞中的重要功能不仅在细菌自噬中,而且在TLR信号的正确激活中。因此,这些结果证明了HDAC6在对细胞内细菌感染的先天免疫应答中的重要调节作用。

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