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Molecular mechanisms of chemotropism and cell fusion in unicellular fungi

机译:单细胞真菌中趋化性和细胞融合的分子机制

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摘要

In all eukaryotic phyla, cell fusion is important for many aspects of life, from sexual reproduction to tissue formation. Fungal cells fuse during mating to form the zygote, and during vegetative growth to connect mycelia. Prior to fusion, cells first detect gradients of pheromonal chemoattractants that are released by their partner and polarize growth in their direction. Upon pairing, cells digest their cell wall at the site of contact and merge their plasma membrane. In this Review, I discuss recent work on the chemotropic response of the yeast models Saccharomyces cerevisiae and Schizosaccharomyces pombe, which has led to a novel model of gradient sensing: the cell builds a motile cortical polarized patch, which acts as site of communication where pheromones are released and sensed. Initial patch dynamics serve to correct its position and align it with the gradient from the partner cell. Furthermore, I highlight the transition from cell wall expansion during growth to cell wall digestion, which is imposed by physical and signaling changes owing to hyperpolarization that is induced by cell proximity. To conclude, I discuss mechanisms of membrane fusion, whose characterization remains a major challenge for the future.
机译:在所有真核化学植物中,细胞融合对于生命的许多方面都很重要,从性繁殖到组织形成。在交配期间真菌细胞保险丝以形成受精卵,并且在营养生长期间连接菌丝体。在融合之前,细胞首先检测由其伴侣释放的信息化趋化剂的梯度并在其方向上偏振生长。在配对后,细胞在接触部位的位置消化它们的细胞壁并合并它们的血浆膜。在本次审查中,我讨论了酵母模型酿酒酵母酿酒酵母和Schizosaccharomyces Pombe的嗜疗反应的最新工作,这导致了一种新颖的梯度传感模型:细胞构建动机皮质偏振贴片,其作为信息素的沟通现场被释放和感知。初始修补程序动态用于纠正其位置并将其与伴侣单元格的渐变对齐。此外,我突出了在生长期间从细胞壁膨胀的过渡到细胞壁消化,这是由于由于细胞接近诱导的超极化而通过物理和信号传递变化而施加。最后,我讨论了膜融合的机制,其特征仍然是未来的重大挑战。

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