Literature DB >> 31754042

Multiscale dynamics of tight junction remodeling.

Saranyaraajan Varadarajan1, Rachel E Stephenson1, Ann L Miller2.   

Abstract

Epithelial cells form tissues that generate biological barriers in the body. Tight junctions (TJs) are responsible for maintaining a selectively permeable seal between epithelial cells, but little is known about how TJs dynamically remodel in response to physiological forces that challenge epithelial barrier function, such as cell shape changes (e.g. during cell division) or tissue stretching (e.g. during developmental morphogenesis). In this Review, we first introduce a framework to think about TJ remodeling across multiple scales: from molecular dynamics, to strand dynamics, to cell- and tissue-scale dynamics. We then relate knowledge gained from global perturbations of TJs to emerging information about local TJ remodeling events, where transient localized Rho activation and actomyosin-mediated contraction promote TJ remodeling to repair local leaks in barrier function. We conclude by identifying emerging areas in the field and propose ideas for future studies that address unanswered questions about the mechanisms that drive TJ remodeling.
© 2019. Published by The Company of Biologists Ltd.

Keywords:  Actomyosin; Barrier function; Epithelia; Morphogenesis; Paracellular permeability; Tight junction

Year:  2019        PMID: 31754042      PMCID: PMC6899008          DOI: 10.1242/jcs.229286

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  94 in total

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Authors:  Daniel R Clayburgh; Shari Rosen; Edwina D Witkowski; Fengjun Wang; Stephanie Blair; Steven Dudek; Joe G N Garcia; John C Alverdy; Jerrold R Turner
Journal:  J Biol Chem       Date:  2004-10-26       Impact factor: 5.157

5.  Mechanical tugging force regulates the size of cell-cell junctions.

Authors:  Zhijun Liu; John L Tan; Daniel M Cohen; Michael T Yang; Nathan J Sniadecki; Sami Alom Ruiz; Celeste M Nelson; Christopher S Chen
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6.  Fracture faces of zonulae occludentes from "tight" and "leaky" epithelia.

Authors:  P Claude; D A Goodenough
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7.  Organization of actin, myosin, and intermediate filaments in the brush border of intestinal epithelial cells.

Authors:  N Hirokawa; L G Tilney; K Fujiwara; J E Heuser
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8.  Mechanism of brush border contractility studied by the quick-freeze, deep-etch method.

Authors:  N Hirokawa; T C Keller; R Chasan; M S Mooseker
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9.  Functional significance of the variations in the geometrical organization of tight junction networks.

Authors:  B E Hull; L A Staehelin
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10.  A complex of ZO-1 and the BAR-domain protein TOCA-1 regulates actin assembly at the tight junction.

Authors:  Christina M Van Itallie; Amber Jean Tietgens; Evan Krystofiak; Bechara Kachar; James M Anderson
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Review 2.  Unique and redundant functions of cytoplasmic actins and nonmuscle myosin II isoforms at epithelial junctions.

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Review 5.  The multifarious regulation of the apical junctional complex.

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Review 6.  Permeability of the Endothelial Barrier: Identifying and Reconciling Controversies.

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7.  Actin cytoskeleton dynamics during mucosal inflammation: a view from broken epithelial barriers.

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8.  Doxorubicin increases permeability of murine small intestinal epithelium and cultured T84 monolayers.

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9.  Interplay between Extracellular Matrix Stiffness and JAM-A Regulates Mechanical Load on ZO-1 and Tight Junction Assembly.

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10.  Loss of β-Cytoplasmic Actin in the Intestinal Epithelium Increases Gut Barrier Permeability in vivo and Exaggerates the Severity of Experimental Colitis.

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