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Multiplexed Activity-based Protein Profiling of the Human Pathogen Aspergillus fumigatus Reveals Large Functional Changes upon Exposure to Human Serum

机译:人类病原体烟曲霉的多重基于活动的蛋白质分析揭示了人类血清暴露后的大功能变化。

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摘要

Environmental adaptability is critical for survival of the fungal human pathogen Aspergillus fumigatus in the immunocompromised host lung. We hypothesized that exposure of the fungal pathogen to human serum would lead to significant alterations to the organism's physiology, including metabolic activity and stress response. Shifts in functional pathway and corresponding enzyme reactivity of A. fumigatus upon exposure to the human host may represent much needed prognostic indicators of fungal infection. To address this, we employed a multiplexed activity-based protein profiling (ABPP) approach coupled to quantitative mass spectrometry-based proteomics to measure broad enzyme reactivity of the fungus cultured with and without human serum. ABPP showed a shift from aerobic respiration to ethanol fermentation and utilization over time in the presence of human serum, which was not observed in serum-free culture. Our approach provides direct insight into this pathogen's ability to survive, adapt, and proliferate. Additionally, our multiplexed ABPP approach captured a broad swath of enzyme reactivity and functional pathways and provides a method for rapid assessment of the A. fumigatus response to external stimuli.
机译:环境适应性对于真菌人类病原体烟曲霉在免疫受损宿主肺中的存活至关重要。我们假设真菌病原体暴露于人血清会导致生物体生理的重大变化,包括代谢活性和应激反应。烟曲霉在暴露于人宿主后功能途径的改变和相应的酶反应性可能代表了真菌感染非常需要的预后指标。为了解决这个问题,我们采用了基于多重活性的蛋白质谱分析(ABPP)方法和基于定量质谱的蛋白质组学,以测量在有或没有人血清的情况下培养的真菌的广泛酶反应性。在人血清存在的情况下,ABPP随时间推移从有氧呼吸转变为乙醇发酵和利用,这在无血清培养中没有观察到。我们的方法可直接了解这种病原体的生存,适应和增殖能力。此外,我们的多重ABPP方法捕获了广泛的酶反应性和功能途径,并提供了一种快速评估烟曲霉对外部刺激反应的方法。

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