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Spermine modulates fungal morphogenesis and activates plasma membrane H+-ATPase during yeast to hyphae transition

机译:在酵母菌丝过渡到菌丝的过程中,精胺调节真菌的形态发生并激活质膜H + -ATPase

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Polyamines play a regulatory role in eukaryotic cell growth and morphogenesis. Despite many molecular advances, the underlying mechanism of action remains unclear. Here, we investigate a mechanism by which spermine affects the morphogenesis of a dimorphic fungal model of emerging relevance in plant interactions,Yarrowia lipolytica, through the recruitment of a phytohormone-like pathway involving activation of the plasma membrane P-type H+-ATPase. Morphological transition was followed microscopically, and the H+-ATPase activity was analyzed in isolated membrane vesicles. Proton flux and acidification were directly probed at living cell surfaces by a non-invasive selective ion electrode technique. Spermine and indol-3-acetic acid (IAA) induced the yeast-hypha transition, influencing the colony architecture. Spermine induced H+-ATPase activity and H+efflux in living cells correlating with yeast-hypha dynamics. Pharmacological inhibition of spermine and IAA pathways prevented the physio-morphological responses, and indicated that spermine could act upstream of the IAA pathway. This study provides the first compelling evidence on the fungal morphogenesis and colony development as modulated by a spermine-induced acid growth mechanism analogous to that previously postulated for the multicellular growth regulation of plants.
机译:多胺在真核细胞生长和形态发生中起调节作用。尽管在分子上取得了许多进展,但其潜在的作用机理仍不清楚。在这里,我们研究了一种机制,其中精胺通过募集涉及激活质膜P型H + -ATPase的植物激素样途径,来影响植物相互作用中解构的双态性真菌模型的形态发生。显微镜下观察形态学转变,并在分离的膜囊泡中分析H + -ATPase活性。质子通量和酸化是通过无创选择性离子电极技术直接在活细胞表面探测到的。精胺和吲哚-3-乙酸(IAA)诱导了酵母菌丝向菌丝的过渡,影响了菌落的结构。精胺诱导活细胞中的H + -ATPase活性和H +外排与酵母菌丝动力学相关。对精胺和IAA途径的药理抑制作用阻止了生理形态反应,并表明精胺可以在IAA途径的上游起作用。这项研究提供了关于真菌形态发生和菌落发育的第一个令人信服的证据,这种作用是由精胺诱导的酸生长机制调节的,该机制类似于先前推测的植物多细胞生长调节的机制。

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