Lee D, Hirashima N, Kirino Y
Laboratory of Neurobiophysics, School of Pharmaceutical Sciences, The University of Tokyo 7-3-1, Hongo, Bunkyo-ku, 113-0033, Tokyo, Japan.
Neurosci Lett. 2000 Sep 8;291(1):21-4. doi: 10.1016/s0304-3940(00)01365-3.
Asymmetric phospholipid distribution between the outer and inner monolayers of cholinergic synaptosomal membranes at rest and their redistribution upon depolarization-induced acetylcholine (ACh) release were investigated. Translocation of phospholipids between the monolayers was measured using fluorescence-labeled phospholipid probes, NBD-PS, NBD-PE, and NBD-PC. The percentage of probes in the inner leaflet at equilibrium in synaptosomes at rest was estimated to be 63% (NBD-PS), 36% (NBD-PE), and 31% (NBD-PC). Depolarization-induced exocytosis induced rapid redistribution of these probes. Approximately 35% of PS and PC in the inner leaflet moved to the outer leaflet, whereas only 16% of PE moved. To further elucidate the mechanism of exocytosis and membrane fusion at presynaptic nerve terminals in the future, the rapid phospholipid translocation associated with exocytosis must be taken into account.
研究了静息时胆碱能突触体膜外层和内层单分子层之间不对称的磷脂分布以及去极化诱导乙酰胆碱(ACh)释放时它们的重新分布。使用荧光标记的磷脂探针NBD-PS、NBD-PE和NBD-PC测量单分子层之间磷脂的转运。静息突触体中平衡时内小叶中探针的百分比估计为63%(NBD-PS)、36%(NBD-PE)和31%(NBD-PC)。去极化诱导的胞吐作用导致这些探针迅速重新分布。内小叶中约35%的PS和PC转移到外小叶,而只有16%的PE发生转移。为了在未来进一步阐明突触前神经末梢的胞吐作用和膜融合机制,必须考虑与胞吐作用相关的快速磷脂转运。