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Extracellular adenosine modulates host-pathogen interactions through regulation of systemic metabolism during immune response in Drosophila

机译:果蝇免疫应答过程中细胞外腺苷通过调节全身代谢来调节宿主-病原体相互作用。

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摘要

Phagocytosis by hemocytes, Drosophila macrophages, is essential for resistance to Streptococcus pneumoniae in adult flies. Activated macrophages require an increased supply of energy and we show here that a systemic metabolic switch, involving the release of glucose from glycogen, is required for effective resistance to S. pneumoniae. This metabolic switch is mediated by extracellular adenosine, as evidenced by the fact that blocking adenosine signaling in the adoR mutant suppresses the systemic metabolic switch and decreases resistance to infection, while enhancing adenosine effects by lowering adenosine deaminase ADGF-A increases resistance to S. pneumoniae. Further, that ADGF-A is later expressed by immune cells during infection to regulate these effects of adenosine on the systemic metabolism and immune response. Such regulation proved to be important during chronic infection caused by Listeria monocytogenes. Lowering ADGF-A specifically in immune cells prolonged the systemic metabolic effects, leading to lower glycogen stores, and increased the intracellular load of L. monocytogenes, possibly by feeding the bacteria. An adenosine-mediated systemic metabolic switch is thus essential for effective resistance but must be regulated by ADGF-A expression from immune cells to prevent the loss of energy reserves and possibly to avoid the exploitation of energy by the pathogen.
机译:血细胞,果蝇巨噬细胞的吞噬作用对于成年果蝇对肺炎链球菌的抗性至关重要。活化的巨噬细胞需要增加能量的供应,我们在这里表明,要有效抵抗肺炎链球菌,需要进行系统性的代谢转换,包括从糖原中释放葡萄糖。这种代谢转换是由细胞外腺苷介导的,这一事实证明,在adoR突变体中阻断腺苷信号传导会抑制全身性代谢转换并降低对感染的抵抗力,同时通过降低腺苷脱氨酶ADGF-A来增强腺苷作用,从而增加对肺炎链球菌的抵抗力。 。此外,ADGF-A随后在感染过程中由免疫细胞表达,以调节腺苷对全身代谢和免疫反应的这些作用。事实证明,这种调节在单核细胞增多性李斯特菌引起的慢性感染中很重要。在免疫细胞中特异性降低ADGF-A可以延长全身代谢作用,导致糖原存储量降低,并可能通过喂食细菌来增加单核细胞增生李斯特菌的细胞内负荷。因此,腺苷介导的全身性代谢转换对于有效抵抗是必不可少的,但必须由免疫细胞中的ADGF-A表达来调节,以防止能量储备的损失并可能避免病原体对能量的利用。

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