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Miscibility Transition Temperature Scales with Growth Temperature in a Zebrafish Cell Line

机译:斑马鱼细胞系中混溶性转变温度随生长温度的变化而变化。

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摘要

Cells can alter the lipid content of their plasma membranes upon changes in their environment to maintain and adjust membrane function. Recent work suggests that some membrane functions arise because cellular plasma membranes are poised close to a miscibility transition under growth conditions. Here we report experiments utilizing giant plasma membrane vesicles (GPMVs) to explore how membrane transition temperature varies with growth temperature in a zebrafish cell line (ZF4) that can be adapted for growth between 20 and 32°C. We find that GPMV transition temperatures adjust to be 16.7 ± 1.2°C below growth temperature for four growth temperatures investigated and that adjustment occurs over roughly 2 days when temperature is abruptly lowered from 28 to 20°C. We also find that GPMVs have slightly different lipidomes when isolated from cells adapted for growth at 28 and 20°C. Similar to past work in vesicles derived from mammalian cells, fluctuating domains are observed in ZF4-derived GPMVs, consistent with their having critical membrane compositions. Taken together, these experimental results suggest that cells in culture biologically tune their membrane composition in a way that maintains specific proximity to a critical miscibility transition.
机译:细胞可以根据环境变化改变质膜的脂质含量,以维持和调节膜功能。最近的工作表明某些膜功能的出现是因为细胞质膜在生长条件下接近于可混溶转变。在这里,我们报告利用巨型质膜囊泡(GPMV)的实验,以探讨膜转变温度如何随斑马鱼细胞系(ZF4)的生长温度而变化,该细胞系可适应20至32°C的生长。我们发现,对于所研究的四个生长温度,GPMV的转变温度调整为低于生长温度16.7±1.2°C,并且当温度从28°C突然降低至20°C时,调整发生在大约2天的时间内。我们还发现,当从适合在28和20°C下生长的细胞中分离时,GPMV的脂质组略有不同。类似于过去在哺乳动物细胞来源的囊泡中所做的工作,在源自ZF4的GPMV中观察到波动域,这与其具有关键的膜组成是一致的。综上所述,这些实验结果表明,培养中的细胞可以通过生物学方式调节其膜的组成,从而保持与关键的混溶性转变的特异性接近。

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