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Endocytic response of type I alveolar epithelial cells to hypertonic stress

机译:I型肺泡上皮细胞对高渗应激的内吞反应

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摘要

We present plasma membrane (PM) internalization responses of type I alveolar epithelial cells to a 50 mosmol/l increase in tonicity. Our research is motivated by interest in ATI repair, for which endocytic retrieval of PM appears to be critical. We validated pharmacological and molecular tools to dissect the endocytic machinery of these cells and used these tools to test the hypothesis that osmotic stress triggers a pathway-specific internalization of PM domains. Validation experiments confirmed the fluorescent analogs of lactosyl-ceramide, transferrin, and dextran as pathway-specific cargo of caveolar, clathrin, and fluid-phase uptake, respectively. Pulse-chase experiments indicate that hypertonic exposure causes a downregulation of clathrin and fluid-phase endocytosis while stimulating caveolar endocytosis. The tonicity-mediated increase in caveolar endocytosis was associated with the translocation of caveolin-1 from the PM and was absent in cells that had been transfected with dominant-negative dynamin constructs. In separate experiments we show that hypertonic exposure increases the probability of PM wound repair following micropuncture from 82 ± 4 to 94 ± 2% (P < 0.01) and that this effect depends on Src pathway activation-mediated caveolar endocytosis. The therapeutic and biological implications of our findings are discussed.
机译:我们目前提出的I型肺泡上皮细胞质膜(PM)内在反应对张力的50 mosmol / l增加。我们的研究是出于对ATI修复的兴趣,对于这些修复而言,胞吞PM的回收显得至关重要。我们验证了解剖这些细胞的内吞机制的药理和分子工具,并使用这些工具测试了渗透压触发PM结构域的途径特异性内在化的假说。验证实验确认了乳糖基神经酰胺,转铁蛋白和右旋糖酐的荧光类似物分别作为特定途径的小窝蛋白,网格蛋白和液相吸收物质。脉冲追踪实验表明,高渗暴露会导致网格蛋白的下调和液相内吞,同时刺激小窝内吞。张力介导的小窝内吞作用的增加与小窝蛋白1从PM的移位有关,并且在用显性负性动力蛋白构建体转染的细胞中不存在。在单独的实验中,我们显示高渗暴露将微穿刺后PM伤口修复的可能性从82±4%增加到94±2%(P <0.01),并且这种作用取决于Src途径激活介导的小窝内吞作用。我们的发现的治疗和生物学意义进行了讨论。

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