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酵母和丝状真菌对抗真菌蛋白 AFP 的生存策略。

Survival strategies of yeast and filamentous fungi against the antifungal protein AFP.

机构信息

Institute of Biotechnology, Department of Applied and Molecular Microbiology, Berlin University of Technology, Gustav-Meyer-Allee 25, 13355 Berlin, Germany.

出版信息

J Biol Chem. 2011 Apr 22;286(16):13859-68. doi: 10.1074/jbc.M110.203588. Epub 2011 Feb 22.

Abstract

The activities of signaling pathways are critical for fungi to survive antifungal attack and to maintain cell integrity. However, little is known about how fungi respond to antifungals, particularly if these interact with multiple cellular targets. The antifungal protein AFP is a very potent inhibitor of chitin synthesis and membrane integrity in filamentous fungi and has so far not been reported to interfere with the viability of yeast strains. With the hypothesis that the susceptibility of fungi toward AFP is not merely dependent on the presence of an AFP-specific target at the cell surface but relies also on the cell's capacity to counteract AFP, we used a genetic approach to decipher defense strategies of the naturally AFP-resistant strain Saccharomyces cerevisiae. The screening of selected strains from the yeast genomic deletion collection for AFP-sensitive phenotypes revealed that a concerted action of calcium signaling, TOR signaling, cAMP-protein kinase A signaling, and cell wall integrity signaling is likely to safeguard S. cerevisiae against AFP. Our studies uncovered that the yeast cell wall gets fortified with chitin to defend against AFP and that this response is largely dependent on calcium/Crz1p signaling. Most importantly, we observed that stimulation of chitin synthesis is characteristic for AFP-resistant fungi but not for AFP-sensitive fungi, suggesting that this response is a successful strategy to protect against AFP. We finally propose the adoption of the damage-response framework of microbial pathogenesis for the interactions of antimicrobial proteins and microorganisms in order to comprehensively understand the outcome of an antifungal attack.

摘要

信号通路的活性对于真菌在抗真菌攻击中存活和维持细胞完整性至关重要。然而,对于真菌如何对抗真菌药物的反应知之甚少,特别是如果这些药物与多个细胞靶标相互作用。抗真菌蛋白 AFP 是一种非常有效的丝状真菌几丁质合成和膜完整性抑制剂,迄今为止,尚未有报道称它会干扰酵母菌株的活力。我们假设真菌对 AFP 的敏感性不仅取决于细胞表面是否存在 AFP 特异性靶标,还取决于细胞抵抗 AFP 的能力,因此我们使用遗传方法来破译天然 AFP 抗性菌株酿酒酵母的防御策略。从酵母基因组缺失文库中筛选出对 AFP 敏感的表型的选定菌株表明,钙信号、TOR 信号、cAMP-蛋白激酶 A 信号和细胞壁完整性信号的协同作用可能使酿酒酵母免受 AFP 的侵害。我们的研究表明,酵母细胞壁会用几丁质加固以抵御 AFP,而这种反应在很大程度上依赖于钙/Crz1p 信号。最重要的是,我们观察到几丁质合成的刺激是 AFP 抗性真菌的特征,但不是 AFP 敏感真菌的特征,这表明这种反应是保护自身免受 AFP 侵害的一种成功策略。最后,我们建议采用微生物发病机制的损伤反应框架来研究抗菌蛋白和微生物的相互作用,以便全面了解抗真菌攻击的结果。

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