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Updated: Jul 10, 2026

Mechanical Stimulation-induced Calcium Wave Propagation in Cell Monolayers: The Example of Bovine Corneal Endothelial Cells
Published on: July 16, 2013
A symmetric region produces a novel calcium binding mode in the human Cx46 connexon
Cristopher Stepke1,2, Nicolas Espinoza1,2, Fabian Parra3
1Centro Interdisciplinario de Neurociencias de Valparaíso (CINV), Valparaiso, Chile.
Abstract:
The human connexon formed by connexin 46 (C-hCx46) is a channel with high voltage sensitivity and selective permeability to cations. In this work, we studied the interaction of Ca2+ with C-hCx46 and C-hCx26 using molecular dynamics simulations. Unlike other connexons such as the connexon formed by human connexin 26 (C-hCx26), where Ca2+ binds to specific sites, in C-hCx46 Ca2+ interacts with a toroidal confinement zone limited by negatively charged residues, whose symmetrical distribution allows it to move freely without varying its total attraction potential. This symmetry is lost in C-hCx26 due to the substitution of one of these residues by a lysine, which causes Ca2+ to be trapped in specific regions where the electrostatic attraction force is greater. In C-hCx46 a negative electrostatic potential is observed inside the pore, which is screened when interacting with Ca2+. In addition, the presence of Ca2+ reduces potassium and water permeability.
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