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首页> 外文期刊>Neuron >Mechanisms underlying phasic and sustained secretion in chromaffin cells from mouse adrenal slices.
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Mechanisms underlying phasic and sustained secretion in chromaffin cells from mouse adrenal slices.

机译:小鼠肾上腺切片嗜铬细胞中阶段性和持续分泌的潜在机制。

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摘要

Many neurosecretory preparations display two components of depolarization-induced exocytosis: a phasic component synchronized with Ca2+ channel opening, followed by a slower sustained component. We evaluated possible mechanisms underlying this biphasic behavior by stimulating mouse chromaffin cells in situ with both depolarizations and flash photolysis of caged Ca2+. From a direct comparison of the secretory responses to both stimuli, we conclude that phasic and sustained release components originate from a readily releasable pool (RRP) of equally fusion-competent vesicles, suggesting that differences in the vesicles' proximity to Ca2+ channels underlie the biphasic secretory behavior. An intermediate pool in dynamic equilibrium with the RRP ensures rapid recruitment of release-ready vesicles after RRP depletion. Our results are discussed in terms of a refined model for secretion in chromaffin cells.
机译:许多神经分泌制剂显示出去极化诱导的胞吐作用的两个组成部分:与Ca2 +通道开放同步的阶段性组成部分,其次是较慢的持续性组成部分。我们通过用去极化和笼装Ca2 +的快速光解法刺激原位小鼠嗜铬细胞评估了这种双相行为的潜在机制。从对两种刺激的分泌反应的直接比较中,我们得出结论,相和持续释放成分源自具有相同融合能力的囊泡的易释放库(RRP),表明囊泡与Ca2 +通道的接近程度不同是双相的分泌行为。与RRP处于动态平衡的中间池可确保RRP耗尽后迅速募集释放就绪的囊泡。我们针对嗜铬细胞分泌的精确模型讨论了我们的结果。

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