首页> 美国卫生研究院文献>Cell Regulation >Depletion of Phosphatidylcholine in Yeast Induces Shortening and Increased Saturation of the Lipid Acyl Chains: Evidence for Regulation of Intrinsic Membrane Curvature in a Eukaryote
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Depletion of Phosphatidylcholine in Yeast Induces Shortening and Increased Saturation of the Lipid Acyl Chains: Evidence for Regulation of Intrinsic Membrane Curvature in a Eukaryote

机译:酵母中磷脂酰胆碱的耗尽导致脂质酰基链的缩短和饱和度的增加:真核生物内在膜曲率调节的证据。

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摘要

To study the consequences of depleting the major membrane phospholipid phosphatidylcholine (PC), exponentially growing cells of a yeast cho2opi3 double deletion mutant were transferred from medium containing choline to choline-free medium. Cell growth did not cease until the PC level had dropped below 2% of total phospholipids after four to five generations. Increasing contents of phosphatidylethanolamine (PE) and phosphatidylinositol made up for the loss of PC. During PC depletion, the remaining PC was subject to acyl chain remodeling with monounsaturated species replacing diunsaturated species, as shown by mass spectrometry. The remodeling of PC did not require turnover by the SPO14-encoded phospholipase D. The changes in the PC species profile were found to reflect an overall shift in the cellular acyl chain composition that exhibited a 40% increase in the ratio of C16 over C18 acyl chains, and a 10% increase in the degree of saturation. The shift was stronger in the phospholipid than in the neutral lipid fraction and strongest in the species profile of PE. The shortening and increased saturation of the PE acyl chains were shown to decrease the nonbilayer propensity of PE. The results point to a regulatory mechanism in yeast that maintains intrinsic membrane curvature in an optimal range.
机译:为了研究耗尽主要膜磷脂磷脂酰胆碱(PC)的后果,将酵母cho2opi3双重缺失突变体的指数生长细胞从含有胆碱的培养基转移到无胆碱的培养基中。直到四到五代后,PC水平下降到总磷脂的2%以下,细胞生长才停止。磷脂酰乙醇胺(PE)和磷脂酰肌醇含量的增加弥补了PC的损失。在PC耗尽期间,剩余的PC进行酰基链重塑,用单不饱和物质代替双不饱和物质,如质谱图所示。 PC的重塑不需要SPO14编码的磷脂酶D的更新。发现PC种类分布的变化反映了细胞酰基链组成的总体变化,表明C16相对于C18酰基的比率增加了40%链,饱和度增加10%。磷脂的迁移比中性脂类的迁移更强,而PE的物种分布最强。显示出PE酰基链的缩短和增加的饱和度降低了PE的非双层倾向。结果表明酵母中的调节机制将固有的膜曲率保持在最佳范围内。

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