Related Experiment Video
Updated: Aug 21, 2026

Perturbing Endothelial Biomechanics via Connexin 43 Structural Disruption
Published on: October 4, 2019
Mechanistic insights into Claudin-14 dysfunction implicated in veins of Galen malformation
Rubina1, Sehrish Jamal1, Manming Xu2
1Third World Center for Science and Technology, International Center for Chemical and Biological Sciences, University of Karachi, Karachi, 75270, Pakistan.
Abstract:
Claudin-14 (CLDN14) is a key component of tight junctions (TJs) critical for maintaining paracellular barrier function. Variants of CLDN14 have been linked to Vein of Galen malformations (VOGMs), a rare cerebrovascular disorder; however, the molecular mechanisms underlying their pathogenicity remain unknown. Here, we investigate the mechanistic effects of two VOGM-associated mutations, A113P and V143M, using reinforcement-learning driven enhanced sampling molecular dynamics simulations combined with DiffNets-based deep learning and independent trajectory-wide structural analyses. Our analysis reveals that A113P induces broader structural disruption of CLDN14, perturbing paracellular sealing, pore symmetry, and inter-protomer communication, whereas V143M induces structural rearrangements centred around TM3 and the TM3-ECL2 region. In both cases, mutation-specific alterations are observed in structural stability and interfacial organization across oligomeric assemblies. Notably, these effects are qualitatively consistent across different modelled architectures, despite variability in local responses. In the absence of experimentally resolved structures, the structural perturbations reported here provide a mechanistic understanding of how VOGM-associated variants may influence CLDN14 structure and dynamics.
Related Concept Videos
Tight Junctions
Varicose Veins I: Introduction
Pinching-off of Coated Vesicles
Venous Thrombosis II: Clinical Manifestations and Diagnostic Studies
Regulation of Angiogenesis and Blood Supply
Venous Thrombosis I: Introduction

