Microtubule disassembly breaks down the barrier integrity of corneal endothelium

Supriya S Jalimarada1, Mahesh Shivanna, Vidisha Kini

  • 1School of Optometry, Indiana University, Bloomington, IN 47405, USA.

Insights

Microtubule disassembly disrupts corneal endothelial barrier integrity by activating RhoA and weakening the peri-junctional actomyosin ring (PAMR). Stabilizing microtubules prevents this breakdown, maintaining barrier function.

Area of Science:

  • Cell biology
  • Ocular surface science
  • Biochemistry

Background:

  • The peri-junctional actomyosin ring (PAMR) is crucial for corneal endothelial barrier integrity.
  • Increased PAMR contractility compromises this barrier.

Purpose of the Study:

  • To investigate the impact of microtubule disassembly on PAMR contractility and corneal endothelial barrier function.
  • To elucidate the molecular mechanisms underlying microtubule-mediated barrier regulation.

Main Methods:

  • Cultured bovine corneal endothelial cells (BCEC) were treated with nocodazole to induce microtubule disassembly.
  • Myosin Light Chain (MLC) phosphorylation, ZO-1 localization, cell permeability, and trans-endothelial electrical resistance (TER) were assessed.
  • Effects of Rho kinase inhibitor (Y-27632), forskolin, and thrombin were evaluated.

Main Results:

  • Microtubule disassembly by nocodazole increased MLC phosphorylation, disrupted actin cytoskeleton and ZO-1 localization, and decreased TER and barrier integrity.
  • Y-27632 and forskolin reversed nocodazole-induced changes, indicating RhoA involvement.
  • Thrombin induced similar effects, which were attenuated by paclitaxel-mediated microtubule stabilization.

Conclusions:

  • Microtubule disassembly compromises corneal endothelial barrier integrity via RhoA activation and PAMR disruption.
  • Microtubule integrity is essential for maintaining corneal endothelial barrier function.
  • GPCR signaling can influence microtubule organization, impacting barrier integrity.

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