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Zymogen granule exocytosis is characterized by long fusion pore openings and preservation of vesicle lipid identity

机译:Zymogen颗粒胞吐作用的特点是融合孔长且可保持囊泡脂质身份

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摘要

The dynamics of the fusion pore that forms between a secretory vesicle and the plasma membrane are important in the regulation of both exocytosis and endocytosis. Here, we describe characteristics of fusion during zymogen granule exocytosis in exocrine pancreatic acinar cells. By using fluorescence recovery after photobleaching techniques, we show that the fusion pore remains open to allow free aqueous exchange with the vesicle lumen. There is no lipid interchange between the plasma and granule membranes during this time, and at the end of its life, the intact granule shrinks in situ, probably by a gradual pinching off of membrane patches. We propose that the protracted fusion pore lifetime is adapted to permit compound exocytosis, whereby the lingering primary granule acts as a conduit through which the contents of a secondary granule can be released. The lack of lipid intermixing may then facilitate selective recycling of granule membrane and preservation of apical membrane integrity.
机译:在分泌囊泡和质膜之间形成的融合孔的动力学对于胞吐作用和胞吞作用的调节均很重要。在这里,我们描述了外分泌胰腺腺泡细胞中酶原颗粒胞吐过程中的融合特征。通过使用光漂白技术后的荧光恢复,我们表明融合孔保持开放,以允许与囊泡腔的自由水交换。在此期间,质膜和颗粒膜之间没有脂质交换,并且在其寿命结束时,完整的颗粒可能会逐渐收缩膜片而原位收缩。我们提出延长的融合孔寿命适用于允许化合物胞吐作用,从而挥之不去的初级颗粒充当导管,次级颗粒的内容物可通过该导管释放。脂质混合的缺乏然后可以促进颗粒膜的选择性回收和顶端膜完整性的保存。

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