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SNAP23 is selectively expressed in airway secretory cells and mediates baseline and stimulated mucin secretion

机译:SNAP23在气道分泌细胞中选择性表达并介导基线和刺激的粘蛋白分泌

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摘要

Airway mucin secretion is important pathophysiologically and as a model of polarized epithelial regulated exocytosis. We find the trafficking protein, SNAP23 (23-kDa paralogue of synaptosome-associated protein of 25?kDa), selectively expressed in secretory cells compared with ciliated and basal cells of airway epithelium by immunohistochemistry and FACS, suggesting that SNAP23 functions in regulated but not constitutive epithelial secretion. Heterozygous SNAP23 deletant mutant mice show spontaneous accumulation of intracellular mucin, indicating a defect in baseline secretion. However mucins are released from perfused tracheas of mutant and wild-type (WT) mice at the same rate, suggesting that increased intracellular stores balance reduced release efficiency to yield a fully compensated baseline steady state. In contrast, acute stimulated release of intracellular mucin from mutant mice is impaired whether measured by a static imaging assay 5?min after exposure to the secretagogue ATP or by kinetic analysis of mucins released from perfused tracheas during the first 10?min of ATP exposure. Together, these data indicate that increased intracellular stores cannot fully compensate for the defect in release efficiency during intense stimulation. The lungs of mutant mice develop normally and clear bacteria and instilled polystyrene beads comparable to WT mice, consistent with these functions depending on baseline secretion that is fully compensated.
机译:气道粘蛋白的分泌在病理生理上是重要的,并且是极化上皮调节的胞吐作用的模型。我们发现,通过免疫组织化学和FACS,与气道上皮纤毛和基底细胞相比,运输蛋白SNAP23(25kkDa的突触小体相关蛋白的23 kDa旁系同源蛋白)在分泌细胞中选择性表达,提示SNAP23在受调节但不起作用本构上皮分泌。杂合SNAP23缺失突变小鼠表现出细胞内粘蛋白的自发积累,表明基线分泌存在缺陷。但是,粘蛋白以相同的速率从突变和野生型(WT)小鼠的灌注气管中释放,这表明增加的细胞内储存平衡降低了释放效率,从而产生了完全补偿的基线稳态。相反,无论是通过暴露于促分泌素ATP后5分钟的静态显像测定还是通过在ATP暴露的前10分钟内从灌注的气管释放的粘蛋白的动力学分析来测量,突变小鼠的细胞内粘蛋白的急性刺激释放都会受到损害。总之,这些数据表明增加的细胞内储存不能完全补偿强烈刺激期间释放效率的缺陷。与野生型小鼠相比,突变型小鼠的肺部发育正常,细菌清晰,滴入的聚苯乙烯珠粒与这些功能一致,这取决于被完全补偿的基线分泌。

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