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首页> 外文期刊>Molecular biology of the cell >Distinct Apical and Basolateral Membrane Requirements for Stretch-induced Membrane Traffic at the Apical Surface of Bladder Umbrella Cells
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Distinct Apical and Basolateral Membrane Requirements for Stretch-induced Membrane Traffic at the Apical Surface of Bladder Umbrella Cells

机译:膀胱伞细胞顶端表面牵张诱导膜运输的不同顶和基底外侧膜要求

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Epithelial cells respond to mechanical stimuli by increasing exocytosis, endocytosis, and ion transport, but how these processes are initiated and coordinated and the mechanotransduction pathways involved are not well understood. We observed that in response to a dynamic mechanical environment, increased apical membrane tension, but not pressure, stimulated apical membrane exocytosis and ion transport in bladder umbrella cells. The exocytic response was independent of temperature but required the cytoskeleton and the activity of a nonselective cation channel and the epithelial sodium channel. The subsequent increase in basolateral membrane tension had the opposite effect and triggered the compensatory endocytosis of added apical membrane, which was modulated by opening of basolateral K+ channels. Our results indicate that during the dynamic processes of bladder filling and voiding apical membrane dynamics depend on sequential and coordinated mechanotransduction events at both membrane domains of the umbrella cell.
机译:上皮细胞通过增加胞吐作用,内吞作用和离子转运来对机械刺激作出反应,但是如何启动和协调这些过程以及涉及的机械传导途径尚不清楚。我们观察到响应动态的机械环境,增加的顶膜张力,而不是压力,刺激了顶伞膜胞吐作用和膀胱伞细胞中的离子转运。胞外反应与温度无关,但需要细胞骨架以及非选择性阳离子通道和上皮钠通道的活性。随后的基底外侧膜张力增加具有相反的作用,并触发了附加的顶端膜的代偿性内吞作用,其通过基底外侧K + 通道的开放来调节。我们的结果表明,在膀胱充盈和排空的动态过程中,顶膜动力学取决于伞状细胞两个膜域的顺序和协调的机械转导事件。

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