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首页> 外文期刊>Journal of cell biology >Ergosterol promotes pheromone signaling and plasma membrane fusion in mating yeast
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Ergosterol promotes pheromone signaling and plasma membrane fusion in mating yeast

机译:麦角固醇促进交配酵母中的信息素信号传递和质膜融合

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Ergosterol depletion independently inhibits two aspects of yeast mating: pheromone signaling and plasma membrane fusion. In signaling, ergosterol participates in the recruitment of Ste5 to a polarized site on the plasma membrane. Ergosterol is thought to form microdomains within the membrane by interacting with the long acyl chains of sphingolipids. We find that although sphingolipid-free ergosterol is concentrated at sites of cell–cell contact, transmission of the pheromone signal at contact sites depends on a balanced ratio of ergosterol to sphingolipids. If a mating pair forms between ergosterol-depleted cells despite the attenuated pheromone response, the subsequent process of membrane fusion is retarded. Prm1 also participates in membrane fusion. However, ergosterol and Prm1 have independent functions and only prm1 mutant mating pairs are susceptible to contact-dependent lysis. In contrast to signaling, plasma membrane fusion is relatively insensitive to sphingolipid depletion. Thus, the sphingolipid-free pool of ergosterol promotes plasma membrane fusion.
机译:麦角固醇的消耗独立地抑制了酵母交配的两个方面:信息素信号传导和质膜融合。在信号传导中,麦角固醇参与将Ste5募集到质膜上的极化位点。麦角固醇被认为通过与鞘脂的长酰基链相互作用而在膜内形成微区。我们发现,尽管无鞘脂的麦角固醇集中在细胞间接触部位,但信息素在接触部位的传递取决于麦角固醇与鞘脂的平衡比例。如果尽管信息素应答减弱,但在麦角固醇耗尽的细胞之间仍形成配对,则随后的膜融合过程将受到阻碍。 Prm1也参与膜融合。但是,麦角固醇和Prm1具有独立的功能,只有prm1突变体交配对易受接触依赖性裂解的影响。与信号转导相反,质膜融合对鞘脂耗竭相对不敏感。因此,麦角固醇的无鞘脂脂质池促进质膜融合。

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