Department of Molecular and Applied Microbiology, Leibniz Institute for Natural Product Research and Infection Biology-Hans Knöll Institute, Beutenbergstrasse 11a, 07745 Jena, Germany.
J Proteomics. 2012 Jul 16;75(13):4038-49. doi: 10.1016/j.jprot.2012.05.023. Epub 2012 May 23.
The isoprenoid alcohol farnesol represents a quorum-sensing molecule in pathogenic yeasts, but was also shown to inhibit the growth of many filamentous fungi. In order to gain a deeper insight into the antifungal activity of farnesol, we performed 2D-differential gel electrophoretic analysis (2D-DIGE) of Aspergillus nidulans exposed to farnesol. We observed an increased abundance of antioxidative enzymes and proteins involved in protein folding and the ubiquitin-mediated protein degradation. A striking finding was the strong up-regulation of a dehydrin-like protein (DlpA). Expression analyses suggested the involvement of DlpA in the cellular response to oxidative, osmotic and cold stress. In line with these data, we demonstrated that dlpA expression was regulated by the MAP kinase SakA/HogA. The generation of both a dlpA Tet(on) antisense RNA-producing A. nidulans strain (dlpA-inv) and a ΔdlpA deletion mutant indicated a role of DlpA in conidiation and stress resistance of dormant conidia against heat and ROS. Furthermore, the production of the secondary metabolite sterigmatocystin was absent in both strains dlpA-inv and ΔdlpA. Our results demonstrate the complexity of the farnesol-mediated stress response in A. nidulans and describe a farnesol-inducible dehydrin-like protein that contributes to the high tolerance of resting conidia against oxidative and heat stress.
法呢醇是一种倍半萜类化合物,是病原性酵母菌中的一种群体感应分子,但也被证明可以抑制许多丝状真菌的生长。为了更深入地了解法呢醇的抗真菌活性,我们对暴露于法呢醇的构巢曲霉进行了二维差异凝胶电泳分析(2D-DIGE)。我们观察到抗氧化酶和参与蛋白质折叠和泛素介导的蛋白质降解的蛋白质的丰度增加。一个显著的发现是脱水素样蛋白(DlpA)的强烈上调。表达分析表明 DlpA 参与细胞对氧化、渗透和冷应激的反应。与这些数据一致,我们证明了 DlpA 的表达受 MAP 激酶 SakA/HogA 的调节。生成具有 dlpA Tet(on)反义 RNA 的构巢曲霉菌株(dlpA-inv)和ΔdlpA 缺失突变体表明 DlpA 在休眠分生孢子的产孢和对热和 ROS 的应激抗性中起作用。此外,在 dlpA-inv 和ΔdlpA 两种菌株中都没有产生次级代谢产物麦角固醇。我们的结果表明,法呢醇介导的构巢曲霉应激反应非常复杂,并描述了一种法呢醇诱导的脱水素样蛋白,它有助于休眠分生孢子对氧化和热应激的高耐受性。