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Cryptic Aspergillus nidulans Antimicrobials

机译:隐性曲霉曲霉抗菌剂

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Secondary metabolite (SM) production by fungi is hypothesized to provide some fitness attribute for the producing organisms. However, most SM clusters are “silent” when fungi are grown in traditional laboratory settings, and it is difficult to ascertain any function or activity of these SM cluster products. Recently, the creation of a chromatin remodeling mutant in Aspergillus nidulans induced activation of several cryptic SM gene clusters. Systematic testing of nine purified metabolites from this mutant identified an emodin derivate with efficacy against both human fungal pathogens (inhibiting both spore germination and hyphal growth) and several bacteria. The ability of catalase to diminish this antimicrobial activity implicates reactive oxygen species generation, specifically, the generation of hydrogen peroxide, as the mechanism of emodin hydroxyl activity.
机译:据推测,真菌产生的次级代谢产物(SM)可为产生的生物体提供一定的适应性。然而,当真菌在传统实验室环境中生长时,大多数SM簇是“沉默的”,并且很难确定这些SM簇产品的任何功能或活性。最近,在构巢曲霉中染色质重塑突变体的创建诱导了几个隐秘SM基因簇的激活。对来自该突变体的九种纯化代谢产物的系统测试确定了一种大黄素衍生物,其对人类真菌病原体(抑制孢子萌发和菌丝生长)和几种细菌均具有功效。过氧化氢酶减弱这种抗微生物活性的能力牵涉到活性大黄素羟基活性的机制,即活性氧的产生,特别是过氧化氢的产生。

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