Non-muscle Mlck is required for β-catenin- and FoxO1-dependent downregulation of Cldn5 in IL-1β-mediated barrier dysfunction in brain endothelial cells

被引:61
作者
Beard, Richard S., Jr. [1 ]
Haines, Ricci J. [2 ]
Wu, Kevin Y. [1 ]
Reynolds, Jason J. [1 ]
Davis, Stephanie M. [1 ]
Elliott, John E. [1 ]
Malinin, Nikolay L. [1 ]
Chatterjee, Victor [1 ]
Cha, Byeong J. [1 ]
Wu, Mack H. [2 ]
Yuan, Sarah Y. [1 ]
机构
[1] Univ S Florida, Morsani Coll Med, Dept Mol Pharmacol & Physiol, Tampa, FL 33612 USA
[2] Univ S Florida, Morsani Coll Med, Dept Surg, Tampa, FL 33612 USA
基金
美国国家卫生研究院;
关键词
Non-muscle myosin light chain kinase; Claudin-5; FoxO1; IL-1; beta; beta-catenin; Blood-brain barrier; Neuroinflammation; LIGHT-CHAIN KINASE; TUMOR-NECROSIS-FACTOR; VASCULAR-PERMEABILITY; TIGHT JUNCTIONS; LUNG INJURY; NEURODEGENERATIVE DISORDERS; ADHERENS JUNCTIONS; DEFICIENT MICE; VE-CADHERIN; IN-VIVO;
D O I
10.1242/jcs.144550
中图分类号
Q2 [细胞生物学];
学科分类号
071013 [干细胞生物学];
摘要
Aberrant elevation in the levels of the pro-inflammatory cytokine interleukin-1 beta (IL-1 beta) contributes to neuroinflammatory diseases. Blood-brain barrier (BBB) dysfunction is a hallmark phenotype of neuroinflammation. It is known that IL-1 beta directly induces BBB hyperpermeability but the mechanisms remain unclear. Claudin-5 (Cldn5) is a tight junction protein found at endothelial cell-cell contacts that are crucial for maintaining brain microvascular endothelial cell (BMVEC) integrity. Transcriptional regulation of Cldn5 has been attributed to the transcription factors b-catenin and forkhead box protein O1 (FoxO1), and the signaling molecules regulating their nuclear translocation. Non-muscle myosin light chain kinase (nmMlck, encoded by the Mylk gene) is a key regulator involved in endothelial hyperpermeability, and IL-1 beta has been shown to mediate nmMlck-dependent barrier dysfunction in epithelia. Considering these factors, we tested the hypothesis that nmMlck modulates IL-1 beta-mediated downregulation of Cldn5 in BMVECs in a manner that depends on transcriptional repression mediated by b-catenin and FoxO1. We found that treating BMVECs with IL-1 beta induced barrier dysfunction concomitantly with the nuclear translocation of b-catenin and FoxO1 and the repression of Cldn5. Most importantly, using primary BMVECs isolated from mice null for nmMlck, we identified that Cldn5 repression caused by b-catenin and FoxO1 in IL-1 beta-mediated barrier dysfunction was dependent on nmMlck.
引用
收藏
页码:1840 / 1853
页数:14
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