1Medical Mycology Laboratory, Department of Biology, Maynooth University, Maynooth, Co. Kildare, Ireland.
2Division of Hygiene and Medical Microbiology, Medical University of Innsbruck, Innsbruck, Austria.
J Med Microbiol. 2019 Feb;68(2):279-288. doi: 10.1099/jmm.0.000900. Epub 2018 Dec 13.
The neutrophil-derived oxidant N-chlorotaurine (NCT) displays remarkable in vivo tolerability and efficacy against a range of pathogens. The aim of this study was to characterize the response of the pulmonary pathogen Aspergillus fumigatus to NCT.
The effect of NCT on the growth and viability of A. fumigatus was characterized. NCT-induced alteration of amino acids and gliotoxin from A. fumigatus mycelium was assessed. Label-free shotgun quantitative proteomic analysis was performed on A. fumigatus exposed to NCT for 24 h.
Incubation of A. fumigatus with NCT at concentrations ranging from 6.8 to 55 mM decreased conidial growth and viability, and mycelium biomass relative to the controls. Exposure to NCT (13.77 mM) resulted in increased amino acids and gliotoxin levels from A. fumigatus mycelium. Exposure of A. fumigatus mycelium to NCT (6.8 mM) revealed an enrichment in proteins associated with the ribosome, transcription and translation and non-ribosomal peptide biosynthesis (e.g. Pes1, Pes3), which play an essential role in oxidative stress resistance in A. fumigatus. A decrease in the abundance of proteins associated with fumagillin and pseurotin biosynthesis highlighted the anti-virulence activity of NCT.
These results indicate that NCT induces an oxidative stress response in A. fumigatus as evidenced by alterations in the proteome and inhibits conidial and mycelial growth. Clinical investigations of topical application of NCT to treat Aspergillus infections are encouraged.
中性粒细胞衍生的氧化剂 N-氯代牛磺酸(NCT)在体内对多种病原体具有显著的耐受性和疗效。本研究旨在研究肺部病原体烟曲霉对 NCT 的反应。
研究了 NCT 对烟曲霉生长和活力的影响。评估了 NCT 对烟曲霉菌丝体氨基酸和类毒素的影响。对暴露于 NCT 24 小时的烟曲霉进行无标记shotgun 定量蛋白质组分析。
在浓度范围为 6.8 至 55mM 的 NCT 孵育下,烟曲霉的分生孢子生长和活力以及菌丝体生物量相对于对照均降低。暴露于 NCT(13.77mM)会导致烟曲霉菌丝体中的氨基酸和类毒素水平升高。暴露于 NCT(6.8mM)的烟曲霉菌丝体中,与核糖体、转录和翻译以及非核糖体肽生物合成相关的蛋白质(例如 Pes1、Pes3)的丰度增加,这些蛋白质在烟曲霉的氧化应激抗性中起着重要作用。与伏马菌素和伪曲菌素生物合成相关的蛋白质丰度降低,突出了 NCT 的抗毒力活性。
这些结果表明,NCT 通过改变蛋白质组诱导烟曲霉发生氧化应激反应,并抑制分生孢子和菌丝体的生长。鼓励对 NCT 局部应用治疗烟曲霉感染进行临床研究。