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Distinct ceramide synthases regulate polarized growth in the filamentous fungus Aspergillus nidulans

机译:不同的神经酰胺合酶调节丝状真菌构巢曲霉的极化生长

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In filamentous fungi, the stabilization of a polarity axis is likely to be a pivotal event underlying the emergence of a germ tube from a germinating spore. Recent results implicate the polarisome in this process and also suggest that it requires localized membrane organization. Here, we employ a chemical genetic approach to demonstrate that ceramide synthesis is necessary for the formation of a stable polarity axis in the model fungus Aspergillus nidulans. We demonstrate that a novel compound (HSAF) produced by a bacterial biocontrol agent disrupts polarized growth and leads to loss of membrane organization and formin localization at hyphal tips. We show that BarA, a putative acyl-CoA-dependent ceramide synthase that is unique to filamentous fungi mediates the effects of HSAF. Moreover, A. nidulans possesses a second likely ceramide synthase that is essential and also regulates hyphal morphogenesis. Our results suggest that filamentous fungi possess distinct pools of ceramide that make independent contributions to polarized hyphal growth, perhaps through the formation of specialized lipid microdomains that regulate organization of the cytoskeleton.
机译:在丝状真菌中,极性轴的稳定很可能是发芽孢子从胚芽管出现的关键事件。最近的结果暗示极化体在此过程中,也表明它需要局部的膜组织。在这里,我们采用化学遗传方法来证明神经酰胺合成对于在模型真菌构巢曲霉中形成稳定的极性轴是必需的。我们证明了一种由细菌生物防治剂产生的新型化合物(HSAF)破坏了极化生长,并导致膜组织的损失和在菌丝尖端的福尔明定位。我们显示,BarA,一种独特的丝状真菌推定的酰基辅酶A依赖的神经酰胺合酶,介导HSAF的作用。此外,构巢曲霉具有第二种可能的神经酰胺合酶,其是必需的并且还调节菌丝形态发生。我们的研究结果表明,丝状真菌拥有不同的神经酰胺库,它们可能通过形成专门的脂质微结构域来调节细胞骨架的组织,从而对极化的菌丝生长做出独立的贡献。

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