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Functional genomic profiling of Aspergillus fumigatus biofilm reveals enhanced production of the mycotoxin gliotoxin

机译:烟曲霉生物膜的功能基因组分析揭示了真菌毒素胶体毒素的产生增加

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The opportunistic pathogenic mold Aspergillus fumigatus is an increasing cause of morbidity and mortality in immunocompromized and in part immunocompetent patients. A. fumigatus can grow in multicellular communities by the formation of a hyphal network encased in an extracellular matrix. Here, we describe the proteome and transcriptome of planktonic- and biofilm-grown A. fumigatus mycelium after 24 and 48 h. A biofilm- and time-dependent regulation of many proteins and genes of the primary metabolism indicates a developmental stage of the young biofilm at 24 h, which demands energy. At a matured biofilm phase, metabolic activity seems to be reduced. However, genes, which code for hydrophobins, and proteins involved in the biosynthesis of secondary metabolites were significantly upregulated. In particular, proteins of the gliotoxin secondary metabolite gene cluster were induced in biofilm cultures. This was confirmed by real-time PCR and by detection of this immunologically active mycotoxin in culture supernatants using HPLC analysis. The enhanced production of gliotoxin by in vitro formed biofilms reported here may also play a significant role under in vivo conditions. It may confer A. fumigatus protection from the host immune system and also enable its survival and persistence in chronic lung infections such as aspergilloma.
机译:机会致病性霉菌烟曲霉是免疫功能低下和部分具有免疫能力的患者发病率和死亡率增加的原因。烟曲霉可通过包裹在细胞外基质中的菌丝网络在多细胞群落中生长。在这里,我们描述了浮游生物和生物膜生长的烟曲霉菌丝体在24和48小时后的蛋白质组和转录组。初级代谢的许多蛋白质和基因的生物膜和时间依赖性调节表明,年轻的生物膜在24小时内处于发育阶段,这需要能量。在成熟的生物膜阶段,代谢活性似乎降低。但是,编码疏水蛋白的基因和参与次级代谢产物生物合成的蛋白质被显着上调。特别地,在生物膜培养物中诱导了胶质毒素次级代谢产物基因簇的蛋白质。通过实时PCR和使用HPLC分析检测培养上清液中这种具有免疫活性的霉菌毒素来证实这一点。本文报道的体外形成的生物膜对胶体毒素产生的增强作用在体内条件下也可能起重要作用。它可以赋予烟曲霉免受宿主免疫系统的保护,还可以使其在慢性肺部感染(如曲霉菌)中存活并持久存在。

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