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Updated: Jul 12, 2025

Experimental Models for Study of Retinal Pigment Epithelial Physiology and Pathophysiology
Published on: November 6, 2010
FYN regulates aqueous humor outflow and IOP through the phosphorylation of VE-cadherin
Abstract:
The exact sites and molecules that determine resistance to aqueous humor drainage and control intraocular pressure (IOP) need further elaboration. Proposed sites include the inner wall of Schlemms's canal and the juxtacanalicular trabecular meshwork ocular drainage tissues. The adherens junctions (AJs) of Schlemm's canal endothelial cells (SECs) must both preserve the blood-aqueous humor (AQH) barrier and be conducive to AQH drainage. How homeostatic control of AJ permeability in SC occurs and how such control impacts IOP is unclear. We hypothesized that mechano-responsive phosphorylation of the junctional molecule VE-CADHERIN (VEC) by SRC family kinases (SFKs) regulates the permeability of SEC AJs. We tested this by clamping IOP at either 16 mmHg, 25 mmHg, or 45 mmHg in mice and then measuring AJ permeability and VEC phosphorylation. We found that with increasing IOP: 1) SEC AJ permeability increased, 2) VEC phosphorylation was increased at tyrosine-658, and 3) SFKs were activated at the AJ. Among the two SFKs known to phosphorylate VEC, FYN, but not SRC, localizes to the SC. Furthermore, FYN mutant mice had decreased phosphorylation of VEC at SEC AJs, dysregulated IOP, and reduced AQH outflow. Together, our data demonstrate that increased IOP activates FYN in the inner wall of SC, leading to increased phosphorylation of AJ VEC and, thus, decreased resistance to AQH outflow. These findings support a crucial role of mechanotransduction signaling in IOP homeostasis within SC in response to IOP. These data strongly suggest that the inner wall of SC partially contributes to outflow resistance.
Insights
Increased intraocular pressure (IOP) activates FYN kinase in Schlemm's canal, phosphorylating VE-cadherin and reducing aqueous humor outflow resistance. This reveals a key mechanism in IOP homeostasis.
Area of Science:
- Ophthalmology
- Cell Biology
- Physiology
Background:
- Intraocular pressure (IOP) regulation involves aqueous humor (AQH) drainage, with the inner wall of Schlemm's canal (SC) and juxtacanalicular trabecular meshwork as key sites.
- The precise molecular mechanisms controlling AQH outflow resistance and IOP homeostasis remain incompletely understood.
Approach:
- Investigated the role of mechano-responsive phosphorylation of VE-cadherin (VEC) by SRC family kinases (SFKs) in regulating SC endothelial cell (SEC) adherens junction (AJ) permeability.
- Clamped IOP in mice at different levels (16, 25, 45 mmHg) to measure AJ permeability, VEC phosphorylation, and SFK activation.
Key Points:
- Elevated IOP increased SEC AJ permeability and VEC phosphorylation at tyrosine-658.
- FYN, an SFK, was identified as the kinase phosphorylating VEC at SC AJs.
- FYN-deficient mice exhibited dysregulated IOP, reduced AQH outflow, and decreased VEC phosphorylation.
Conclusions:
- Increased IOP activates FYN in the SC inner wall, leading to VEC phosphorylation and decreased AQH outflow resistance.
- Mechanotransduction signaling via FYN and VEC plays a critical role in IOP homeostasis.
- The SC inner wall is a significant contributor to outflow resistance.
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