首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Junctional Adhesion Molecule A Promotes Epithelial Tight Junction Assembly to Augment Lung Barrier Function
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Junctional Adhesion Molecule A Promotes Epithelial Tight Junction Assembly to Augment Lung Barrier Function

机译:结粘附分子A促进上皮紧密结组件以增强肺部屏障功能

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摘要

Epithelial barrier function is maintained by tight junction proteins that control paraceltular fluid flux. Among these proteins is junctional adhesion molecule A (JAM-A), an Ig fold transmembrane protein. To assess JAM-A function in the Lung, we depleted JAM-A in primary alveolar epithelial cells using shRNA. In cultured cells, toss of JAM-A caused an approximately 30% decrease in transepithelial resistance, decreased expression of the tight junction scaffold protein zonula occludens 1, and disrupted junctional localization of the structural transmembrane protein claudin-18. Consistent with findings in other organs, Loss of JAM-A decreased beta 1 integrin expression and impaired filamentous actin formation. Using a model of mild systemic endoxotemia induced by i.p. injection of lipopolysaccharide, we report that JAM-A(-/-) mice showed increased susceptibility to pulmonary edema. On injury, the enhanced susceptibility of JAM-A(-/-) mice to edema correlated with increased, transient disruption of claudin-18, zonula occLudens 1, and zonula occludens 2 localization to Lung tight junctions in situ along with a delay in upregulation of claudin-4. In contrast, wild-type mice showed no change in lung tight junction morphologic features in response to mild systemic endotoxemia. These findings support a key rote of JAM-A in promoting tight junction homeostasis and Lung barrier function by coordinating interactions among claudins, the tight junction scaffold, and the cytoskeleton.
机译:由紧密的结蛋白保持上皮屏障功能,可控制剖腹静脉液体通量。在这些蛋白质中是结粘附分子A(卡纸A),IG折叠跨膜蛋白。为了评估肺中的堵塞功能,我们使用shRNA耗尽初级肺泡上皮细胞中的卡纸。在培养的细胞中,卡纸-A的折腾导致Transepearlial抗性的减少约30%,下降结柄支架蛋白质闭塞1的表达减少,并破坏了结构跨膜蛋白克劳德蛋白-18的结局的结定位。与其他器官中的结果一致,损失的果酱-A降低的β1整合蛋白表达和受损的丝状肌动蛋白形成。使用I.P诱导的轻度系统内毒血症模型。注射脂多糖,我们报告说Jam-A( - / - )小鼠表现出对肺水肿的易感性增加。在损伤时,果酱-A( - / - )小鼠与水肿的增强敏感性与克劳德蛋白-18,Zonula occludens 1和Zonula以原位的延迟延迟延迟克劳丁林-4。相比之下,野生型小鼠响应于轻度系统性内毒素血症,肺部紧密结合形态特征没有变化。这些发现通过协调Claudins,紧密结柄和细胞骨架和细胞骨架之间的相互作用,支持促进紧密交叉稳态和肺屏障功能的关键曲调。

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