Myosin light chain phosphorylation regulates barrier function by remodeling tight junction structure
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Open Access
- 15 May 2006
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 119 (10) , 2095-2106
- https://doi.org/10.1242/jcs.02915
Abstract
Epithelial tight junctions form a barrier against passive paracellular flux. This barrier is regulated by complex physiologic and pathophysiologic signals that acutely fine-tune tight junction permeability. Although actomyosin contraction and myosin light chain phosphorylation are clearly involved in some forms of tight junction regulation, the contributions of other signaling events and the role of myosin light chain phosphorylation in this response are poorly understood. Here we ask if activation of myosin light chain kinase alone is sufficient to induce downstream tight junction regulation. We use a confluent polarized intestinal epithelial cell model system in which constitutively active myosin light chain kinase, tMLCK, is expressed using an inducible promoter. tMLCK expression increases myosin light chain phosphorylation, reorganizes perijunctional F-actin, and increases tight junction permeability. TJ proteins ZO-1 and occludin are markedly redistributed, morphologically and biochemically, but effects on claudin-1 and claudin-2 are limited. tMLCK inhibition prevents changes in barrier function and tight junction organization induced by tMLCK expression, suggesting that these events both require myosin light chain phosphorylation. We conclude that myosin light chain phosphorylation alone is sufficient to induce tight junction regulation and provide new insights into the molecular mechanisms that mediate this regulation.Keywords
This publication has 72 references indexed in Scilit:
- Actin Depolymerization Disrupts Tight Junctions via Caveolae-mediated EndocytosisMolecular Biology of the Cell, 2005
- Interleukin-13 Is the Key Effector Th2 Cytokine in Ulcerative Colitis That Affects Epithelial Tight Junctions, Apoptosis, and Cell RestitutionPublished by Elsevier ,2005
- Akt2 Phosphorylates Ezrin to Trigger NHE3 Translocation and ActivationJournal of Biological Chemistry, 2005
- Differing roles of protein kinase C-ζ in disruption of tight junction barrier by enteropathogenic and enterohemorrhagic Escherichia coliGastroenterology, 2004
- Role for Actin Filament Turnover and a Myosin II Motor in Cytoskeleton-driven Disassembly of the Epithelial Apical Junctional ComplexMolecular Biology of the Cell, 2004
- Identification of a tight junction–associated guanine nucleotide exchange factor that activates Rho and regulates paracellular permeabilityThe Journal of cell biology, 2003
- Functional dissociation of paracellular permeability and transepithelial electrical resistance and disruption of the apical-basolateral intramembrane diffusion barrier by expression of a mutant tight junction membrane protein.The Journal of cell biology, 1996
- Definition of the inhibitory domain of smooth muscle myosin light chain kinase by site-directed mutagenesisBiochemistry, 1991
- Domain organization of chicken gizzard myosin light chain kinase deduced from a cloned cDNABiochemistry, 1986
- A Method for quantifying F‐Actin in chemotactic peptide activated neutrophils: Study of the effect of tBOC peptideCell Motility, 1985