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Published on: August 20, 2016
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.
Abstract:
Increased contractility of the peri-junctional actomyosin ring (PAMR) breaks down the barrier integrity of corneal endothelium. This study has examined the effects of microtubule disassembly on Myosin Light Chain (MLC) phosphorylation, a biochemical marker of actomyosin contraction, and barrier integrity in monolayers of cultured bovine corneal endothelial cells (BCEC). Exposure to nocodazole, which readily induced microtubule disassembly, led to disruption of the characteristically dense assembly of cortical actin cytoskeleton at the apical junctional complex (i.e., PAMR) and dispersion of ZO-1 from its normal locus. Nocodazole also led to an increase in phosphorylation of MLC. Concomitant with these changes, nocodazole caused an increase in permeability to HRP and FITC dextran (10 kDa) and a decrease in trans-endothelial electrical resistance (TER). Y-27632 (a Rho kinase inhibitor) and forskolin (known to inhibit activation of RhoA through direct elevation of cAMP) opposed the nocodazole-induced MLC phosphorylation, decrease in TER, and dispersion of ZO-1. Thrombin, which breaks down the barrier integrity of BCEC monolayers, also induced microtubule disassembly and MLC phosphorylation. Pre-treatment with paclitaxel to stabilize microtubules opposed the thrombin effects. These results suggest that microtubule disassembly breaks down the barrier integrity of BCEC through activation of RhoA and subsequent disruption of the PAMR. The thrombin effect also highlights that signaling downstream of GPCRs can also influence the organization of microtubules.
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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