Checkpoint Kinase 1 Activation Enhances Intestinal Epithelial Barrier Function via Regulation of Claudin-5 Expression

Akihiro Watari1, Maki Hasegawa1, Kiyohito Yagi1

  • 1Laboratories of Bio-Functional Molecular Chemistry, Graduate School of Pharmaceutical Sciences, Osaka University, Suita, Osaka, Japan.

Plos One
|January 5, 2016
PubMed

Insights

DNA-damaging anti-cancer drugs, daunorubicin and rebeccamycin, enhance intestinal epithelial barrier function by increasing claudin-5 expression via Chk1 activation. This suggests a link between DNA damage and tight junction integrity.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Gastroenterology

Background:

  • Epithelial tight junction (TJ) integrity is crucial for barrier function.
  • The relationship between DNA damage and TJ integrity is not well understood.

Purpose of the Study:

  • To investigate the effects of DNA-damaging agents (daunorubicin, rebeccamycin) on TJ integrity in human intestinal cells.
  • To elucidate the molecular mechanisms underlying these effects.

Main Methods:

  • Caco-2 cell monolayers were treated with daunorubicin and rebeccamycin.
  • Transepithelial electrical resistance (TER) and FITC-dextran flux were measured.
  • Claudin-5 expression and protein localization were analyzed.
  • Inhibitors of ATM, ATR, Chk1, and Chk2, as well as Chk1 siRNA, were used.

Main Results:

  • Daunorubicin and rebeccamycin dose-dependently increased TER and decreased FITC-dextran flux, enhancing TJ barrier function.
  • These drugs partially rescued barrier function compromised by inflammatory cytokines TNF-α and IFN-γ.
  • Claudin-5 expression increased and localized to the actin cytoskeleton fraction.
  • Chk1 activation was identified as critical, as Chk1 inhibitors and siRNA blocked the observed increases in TER and claudin-5 expression.

Conclusions:

  • Daunorubicin and rebeccamycin enhance intestinal epithelial TJ barrier function through Chk1-mediated induction of claudin-5 expression.
  • This study establishes a novel link between DNA damage and TJ integrity in the human intestine.

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