Graduate School of Pharmaceutical Sciences, Nagoya City University, Tanabe-dori, Mizuho-ku, Nagoya 467-8603, Japan.
Langmuir. 2010 Sep 21;26(18):14788-92. doi: 10.1021/la102737e.
Exocytosis is a crucial process of secreting various signaling molecules such as neurotransmitters, hormones, and other chemical mediators into the extracellular space. Exocytotic release is caused by membrane fusion of intracellular vesicles with the plasma membrane triggered by an increase in intracellular Ca(2+). In the present study, we developed an artificial system of exocytosis that secretes intravesicular contents upon Ca(2+) influx. We prepared artificial secretory cells using cell-sized giant unilamellar liposomal vesicles (GUVs) that contain small liposomes (SUVs) that correspond to secretory vesicles. To observe exocytosis-like secretion in an artificial system, we labeled both an intra-SUV solution and an SUV membrane with a soluble fluorescent dye and a rhodamine-labeled phospholipid, respectively. To induce membrane fusion between SUVs and a GUV as observed in exocytosis, the Ca(2+) concentration of intra-GUV was elevated by incorporating ionomycin (a Ca(2+) ionophore) into the GUV membrane. We succeeded in inducing exocytosis-like secretion by Ca(2+) elevation in a GUV together with the osmolarity difference between the intra-GUV and extra-GUV solutions.
胞吐作用是一种将各种信号分子(如神经递质、激素和其他化学介质)分泌到细胞外间隙的关键过程。胞吐作用的释放是由细胞内囊泡与质膜的膜融合引起的,这是由细胞内 Ca(2+)的增加触发的。在本研究中,我们开发了一种人工胞吐作用系统,该系统在 Ca(2+)流入时会分泌囊泡内的内容物。我们使用细胞大小的巨大单层脂质体囊泡 (GUV) 制备了人工分泌细胞,其中包含对应于分泌囊泡的小脂质体 (SUV)。为了在人工系统中观察到类似于胞吐作用的分泌,我们分别用一种可溶荧光染料和一种 rhodamine 标记的磷脂标记了 intra-SUV 溶液和 SUV 膜。为了诱导 SUV 与 GUV 之间的膜融合,就像在胞吐作用中观察到的那样,将离子霉素(一种 Ca(2+)载体)掺入 GUV 膜中以提高 intra-GUV 的 Ca(2+)浓度。我们成功地通过在 GUV 中升高 Ca(2+)以及 intra-GUV 和 extra-GUV 溶液之间的渗透压差异来诱导类似于胞吐作用的分泌。