Tracking the uptake of labelled host-derived extracellular vesicles by the human fungal pathogen Aspergillus fumigatus.

microLife Pub Date : 2024-11-06 eCollection Date: 2024-01-01 DOI:10.1093/femsml/uqae022
Corissa Visser, Flora Rivieccio, Thomas Krüger, Franziska Schmidt, Zoltán Cseresnyés, Manfred Rohde, Marc Thilo Figge, Olaf Kniemeyer, Matthew G Blango, Axel A Brakhage
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Abstract

Extracellular vesicles (EVs) have gained attention as facilitators of intercellular as well as interkingdom communication during host-microbe interactions. Recently we showed that upon infection, host polymorphonuclear leukocytes produce antifungal EVs targeting the clinically important fungal pathogen Aspergillus fumigatus; however, the small size of EVs (<1 µm) complicates their functional analysis. Here, we employed a more tractable, reporter-based system to label host alveolar epithelial cell-derived EVs and enable their visualization during in vitro A. fumigatus interaction. Fusion of EV marker proteins (CD63, CD9, and CD81) with a Nanoluciferase (NLuc) and a green fluorescent protein (GFP) facilitated their relative quantification by luminescence and visualization by a fluorescence signal. The use of an NLuc fused with a GFP is advantageous as it allows for quantification and visualization of EVs simultaneously without additional external manipulation and to distinguish subpopulations of EVs. Using this system, visualization and tracking of EVs was possible using confocal laser scanning microscopy and advanced imaging analysis. These experiments revealed the propensity of host cell-derived EVs to associate with the fungal cell wall and ultimately colocalize with the cell membrane of A. fumigatus hyphae in large numbers. In conclusion, we have created a series of tools to better define the complex interplay of host-derived EVs with microbial pathogens.

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追踪人类真菌病原体烟曲霉对标记宿主来源的细胞外囊泡的摄取。
在宿主-微生物相互作用过程中,细胞外囊泡(EVs)作为细胞间和界间通讯的促进者而受到关注。最近我们发现,在感染后,宿主多形核白细胞产生抗真菌ev,靶向临床重要的真菌病原体烟曲霉;然而,EVs对体外烟曲霉相互作用的影响较小。将EV标记蛋白(CD63、CD9和CD81)与纳米荧光酶(NLuc)和绿色荧光蛋白(GFP)融合,可以通过发光和荧光信号的可视化来相对量化它们。使用NLuc与GFP融合是有利的,因为它允许同时量化和可视化电动汽车,而无需额外的外部操作,并区分电动汽车的亚群。利用该系统,利用共聚焦激光扫描显微镜和先进的成像分析,可以可视化和跟踪ev。这些实验揭示了宿主细胞源性EVs倾向于与真菌细胞壁结合,并最终与烟曲霉菌丝的细胞膜大量共定位。总之,我们已经创建了一系列工具来更好地定义宿主衍生的ev与微生物病原体的复杂相互作用。
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