首页> 外文期刊>American Journal of Physiology >Resealing of endothelial junctions by focal adhesion kinase.
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Resealing of endothelial junctions by focal adhesion kinase.

机译:通过粘着斑激酶重新密封内皮连接。

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摘要

Endothelial cell (EC) junctions determine vascular barrier properties and are subject to transient opening to allow liquid flux from blood to tissue. Although EC junctions open in the presence of permeability-enhancing factors, including oxidants, the mechanisms by which they reseal remain inadequately understood. To model opening and resealing of EC junctions in the presence of an oxidant, we quantified changes in H(2)O(2)-induced transendothelial resistance (TER) in monolayers of rat lung microvascular EC. During a 30-min exposure, H(2)O(2) (100 microM) decreased TER for an initial approximately 10 min, indicating junctional opening. Subsequently, despite continuous presence of H(2)O(2), TER recovered to baseline, indicating the activation of junctional resealing mechanisms. These bimodal TER transients matched the time course of loss and then gain of E-cadherin at EC junctions. The timing of the TER decrease matched the onset of focal adhesion formation, while F-actin increase at the cell periphery occurred with a time course that complemented the recovery of peripheral E-cadherin. In monolayers expressing a focal adhesion kinase (FAK) mutant (del-FAK) that inhibits FAK activity, the initial H(2)O(2)-induced junctional opening was present, although the subsequent junctional recovery was blocked. Expression of transfected E-cadherin was evident at the cell periphery of wild-type but not del-FAK-expressing EC. E-cadherin overexpression in del-FAK-expressing EC failed to effect major rescue of the junctional resealing response. These findings indicate that in oxidant-induced EC junction opening, FAK plays a critical role in remodeling the adherens junction to reseal the barrier.
机译:内皮细胞(EC)交界处决定了血管屏障的性质,并受到短暂开放,以允许液体从血液流到组织。尽管EC连接在包括氧化剂在内的通透性增强因子的存在下打开,但对其重新密封的机理仍知之甚少。为了模拟在氧化剂存在下EC连接处的打开和重新密封,我们量化了大鼠肺微血管EC单层中H(2)O(2)诱导的内皮电阻(TER)的变化。在30分钟的暴露过程中,H(2)O(2)(100 microM)在初始约10分钟的时间内降低了TER,表明结点开放。随后,尽管连续存在H(2)O(2),但TER恢复至基线,表明接合处重新密封机制已激活。这些双峰TER瞬变与EC连接处E-钙粘蛋白的损失和获得的时间过程相匹配。 TER降低的时机与粘着斑形成的开始相匹配,而细胞周围F-肌动蛋白的增加发生的时间过程与周围E-钙粘蛋白的恢复相辅相成。在表达抑制FAK活性的粘着斑激酶(FAK)突变体(del-FAK)的单层中,存在初始H(2)O(2)诱导的连接开放,尽管随后的连接恢复被阻止。转染的E-钙粘着蛋白的表达在野生型但不是表达del-FAK的EC的细胞外围明显。在表达del-FAK的EC中E-钙粘着蛋白的过表达不能有效挽救结节再密封反应。这些发现表明,在氧化剂诱导的EC连接处打开中,FAK在重塑粘附连接处以重新密封屏障方面起着关键作用。

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