Oberhauser A F, Fernandez J M
University of Chile, Santiago, Chile.
Proc Natl Acad Sci U S A. 1996 Dec 10;93(25):14349-54. doi: 10.1073/pnas.93.25.14349.
Using patch-clamp capacitance and amperometric techniques, we have identified an exocytotic phenotype that affects the function of the fusion pore, the molecular structure that connects the lumen of a secretory vesicle with the extracellular environment during exocytosis. Direct observation of individual exocytotic events in mast cells from the ruby-eye mouse (ru/ru) showed a 3-fold increase in the fraction and duration of transient fusion events with respect to wild-type mice. The fraction of the total fusion events that were transient increased from 0.22 +/- 0.02 (wild type) to 0.65 +/- 0.02 (ru/ru), and the average duration of these events increased from 418 +/- 32 ms (wild type) to 1207 +/- 89 ms (ru/ru). We also show that this phenotype can reduce and delay an evoked secretory response by causing the fusion of vesicles that have been previously emptied by repeated cycles of transient fusion. The exocytotic phenotype that we describe here may be a cause of diseases like platelet storage pool deficiency and prolonged bleeding times for which the ruby-eye mouse serves as an animal model. Furthermore, the identification of the gene causing the fusion pore phenotype reported here will illuminate the molecular mechanisms regulating exocytotic fusion.
运用膜片钳电容和电流测定技术,我们鉴定出一种胞吐表型,它会影响融合孔的功能。融合孔是胞吐过程中连接分泌小泡腔与细胞外环境的分子结构。对红宝石眼小鼠(ru/ru)肥大细胞中单个胞吐事件的直接观察显示,与野生型小鼠相比,瞬时融合事件的比例和持续时间增加了3倍。瞬时融合事件在总融合事件中所占的比例从0.22±0.02(野生型)增加到0.65±0.02(ru/ru),这些事件的平均持续时间从418±32毫秒(野生型)增加到1207±89毫秒(ru/ru)。我们还表明,这种表型可通过导致先前因反复瞬时融合循环而排空的小泡融合,来减少和延迟诱发的分泌反应。我们在此描述的胞吐表型可能是血小板储存池缺乏症和出血时间延长等疾病的一个病因,红宝石眼小鼠可作为这些疾病的动物模型。此外,本文报道的导致融合孔表型的基因的鉴定,将阐明调节胞吐融合的分子机制。