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G2A Protects Mice against Sepsis by Modulating Kupffer Cell Activation: Cooperativity with Adenosine Receptor 2b

机译:G2A通过调节枯否细胞活化保护小鼠免受败血症的影响:与腺苷受体2b的协同作用

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摘要

G2A is a GPCR abundantly expressed in immune cells. G2A−/− mice showed higher lethality, higher plasma cytokines, and an impaired bacterial clearance in response to a murine model of sepsis (cecal ligation and puncture), which were blocked by GdCl3, an inhibitor of Kupffer cells. Anti-IL-10 Ab reversed the impaired bacterial clearance in G2A−/− mice. Indomethacin effectively blocked both the increased i.p. IL-10 levels and the impaired bacterial clearance, indicating that disturbed PG system is the proximal cause of these phenomena. Stimulation with LPS/C5a induced an increase in Escherichia coli phagocytosis and intracellular cAMP levels in G2A+/+ peritoneal macrophages but not G2A−/− cells, which showed more PGE2itrite release and intracellular reactive oxygen species levels. Heterologous coexpression of G2A and adenosine receptor type 2b (A2bAR) induced a synergistic increase in cAMP signaling in a ligand-independent manner, with the evidence of physical interaction of G2A with A2bAR. BAY 60–6583, a specific agonist for A2bAR, increased intracellular cAMP levels in Kupffer cells from G2A+/+ but not from G2A−/− mice. Both G2A and A2bAR were required for antiseptic action of lysophosphatidylcholine. These results show inappropriate activation of G2A−/− Kupffer cells to septic insults due to an impaired cAMP signaling possibly by lack of interaction with A2bAR.
机译:G2A是在免疫细胞中大量表达的GPCR。 G2A -/-小鼠表现出更高的致死率,更高的血浆细胞因子和对败血症的小鼠模型(盲肠结扎和穿刺)造成的细菌清除能力受损,这些小鼠被库普弗抑制剂GdCl3阻断细胞。抗IL-10 Ab可以逆转G2A -/-小鼠中细菌清除率的降低。消炎痛有效地阻止了增加的腹膜内压。 IL-10水平和细菌清除率受损,表明PG系统受损是这些现象的近因。 LPS / C5a刺激导致G2A + / + 腹膜巨噬细胞中大肠杆菌的吞噬作用和细胞内cAMP水平增加,但G2A -/-细胞却没有,这表明更多的PGE2 /亚硝酸盐释放和细胞内活性氧水平。 G2A和2b型腺苷受体(A2bAR)的异源共表达以独立于配体的方式诱导cAMP信号的协同增加,并证明G2A与A2bAR发生了物理相互作用。 BAY 60–6583是A2bAR的特异性激动剂,可提高G2A + / + 小鼠而非K2A -/-小鼠的Kupffer细胞的细胞内cAMP水平。 G2A和A2bAR都是溶血磷脂酰胆碱的杀菌作用所必需的。这些结果表明,由于可能由于缺乏与A2bAR的相互作用而导致的cAMP信号传导受损,导致G2A -/- Kupffer细胞不适当地活化为败血病。

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