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Mass spectrometry imaging of mating Tetrahymena show that changes in cell morphology regulate lipid domain formation

机译:交配的四膜虫的质谱成像表明,细胞形态的变化调节脂质结构域的形成

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摘要

Mass spectrometry imaging has been used here to suggest that changes in membrane structure drive lipid domain formation in mating single-cell organisms. Chemical studies of lipid bilayers in both living and model systems have revealed that chemical composition is coupled to localized membrane structure. However, it is not clear if the lipids that compose the membrane actively modify membrane structure or if structural changes cause heterogeneity in the surface chemistry of the lipid bilayer. We report that time-of-flight secondary ion mass spectrometry images of mating Tetrahymena thermophila acquired at various stages during mating demonstrate that lipid domain formation, identified as a decrease in the lamellar lipid phosphatidylcholine, follows rather than precedes structural changes in the membrane. Domains are formed in response to structural changes that occur during cell-to-cell conjugation. This observation has wide implications in all membrane processes.
机译:质谱成像已用于暗示膜结构的变化驱动交配单细胞生物体中脂质结构域的形成。在活体和模型系统中对脂质双层的化学研究均表明,化学成分与局部膜结构耦合。然而,尚不清楚组成膜的脂质是否能主动修饰膜结构,或者结构变化是否会引起脂质双层表面化学的异质性。我们报告在交配过程中在各个阶段获得的交配嗜热四膜膜的飞行时间二次离子质谱图像表明,脂质结构域形成(被识别为层状脂质磷脂酰胆碱的减少)遵循而不是先于膜的结构变化。响应于细胞间结合过程中发生的结构变化而形成结构域。该观察在所有膜过程中具有广泛的意义。

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