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Candida albicans-induced leukotriene biosynthesis in neutrophils is restricted to the hyphal morphology

机译:念珠菌白醛植物诱导中性粒细胞的白三烯生物合成仅限于亚酚形态

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摘要

Neutrophils are the most abundant leukocytes in circulation playing a key role in acute inflammation during microbial infections. Phagocytosis, one of the crucial defence mechanisms of neutrophils against pathogens, is amplified by chemotactic leukotriene (LT)B4, which is biosynthesized via 5-lipoxygenase (5-LOX). However, extensive liberation of LTB4 can be destructive by over-intensifying the inflammatory process. While enzymatic biosynthesis of LTB4 is well characterized, less is known about molecular mechanisms that activate 5-LOX and lead to LTB4 formation during host–pathogen interactions. Here, we investigated the ability of the common opportunistic fungal pathogen Candida albicans to induce LTB4 formation in neutrophils, and elucidated pathogen-mediated drivers and cellular processesthat activate this pathway. We revealed that C. albicans-induced LTB4 biosynthesis requires both the morphological transition from yeast cells to hyphae and the expression of hyphae-associated genes, as exclusively viable hyphae or yeast-locked mutant cells expressing hyphae-associated genes stimulated 5-LOX by [Ca2+]i mobilization and p38 MAPK activation. LTB4 biosynthesis was orchestrated by synergistic activation of dectin-1 and Toll-like receptor 2, and corresponding signaling via SYK and MYD88, respectively. Conclusively, we report hyphae-specific induction of LTB4 biosynthesis in human neutrophils.This highlights an expanding role of neutrophils during inflammatory processes in the response to C. albicans infections.
机译:中性粒细胞是循环中最丰富的白细胞,在微生物感染期间在急性炎症中发挥关键作用。吞噬作用是嗜中性粒细胞对病原体的关键防御机制之一,通过趋化性白三烯(LT)B4扩增,所述趋化性白酮(LT)B4通过5-脂氧基酶(5-LOX)进行生物合成。但是,通过过度加剧炎症过程,LTB4的广泛解放可以破坏。虽然LTB4的酶生物合成很好,但是关于激活5-LOX的分子机制,并在宿主 - 病原体相互作用期间导致LTB4形成的分子机制较少。在这里,我们调查了常见的机会真菌病原体念珠菌蛋白蛋白诱导中性粒细胞诱导LTB4形成的能力,并阐明的病原体介导的司机和细胞过程活化该途径。我们透露了C. albicans诱导的LTB4生物合成需要从酵母细胞到菌丝的形态转变和菌丝相关基因的表达,作为表达菌丝相关基因的特异性菌丝或酵母锁定的突变细胞刺激5-LOX CA2 +]我动员和P38 MAPK激活。通过Syk和MyD88协同激活Dectin-1和Toll样受体2的协同活化来衡量LTB4生物合成,并通过Syk和MyD88进行相应的信号传导。结论,我们在人性化粒细胞中报告了LTB4生物合成的菌丝特异性诱导。这突出了炎症过程中嗜中性粒细胞在对C. albicans感染的反应中的扩张作用。

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