跨膜蛋白
不饱和度
脂质双层
生物物理学
膜
磷脂
传单(植物学)
双层
化学
光漂白后的荧光恢复
跨膜结构域
膜脂
生物化学
生物
植物
色谱法
受体
作者
Joseph H. Lorent,Kandice R. Levental,Lakshmi Ganesan,G. Rivera-Longsworth,Erdinç Sezgin,Milka Doktorova,Edward Lyman,Ilya Levental
标识
DOI:10.1038/s41589-020-0529-6
摘要
A fundamental feature of cellular plasma membranes (PMs) is an asymmetric lipid distribution between the bilayer leaflets. However, neither the detailed, comprehensive compositions of individual PM leaflets nor how these contribute to structural membrane asymmetries have been defined. We report the distinct lipidomes and biophysical properties of both monolayers in living mammalian PMs. Phospholipid unsaturation is dramatically asymmetric, with the cytoplasmic leaflet being approximately twofold more unsaturated than the exoplasmic leaflet. Atomistic simulations and spectroscopy of leaflet-selective fluorescent probes reveal that the outer PM leaflet is more packed and less diffusive than the inner leaflet, with this biophysical asymmetry maintained in the endocytic system. The structural asymmetry of the PM is reflected in the asymmetric structures of protein transmembrane domains. These structural asymmetries are conserved throughout Eukaryota, suggesting fundamental cellular design principles. Lipidomics across the bilayer membrane plus biophysical and fluorescence approaches find asymmetry in phospholipid unsaturation and localization of protein transmembrane domains based on their ability to pack within the different membrane leaflets.
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