Related Experiment Video
Updated: Jun 5, 2025

Mechanical Stimulation-induced Calcium Wave Propagation in Cell Monolayers: The Example of Bovine Corneal Endothelial Cells
Published on: July 16, 2013
A fully human IgG1 antibody targeting connexin 32 extracellular domain blocks CMTX1 hemichannel dysfunction in an in
Abraham Tettey-Matey1,2, Viola Donati1,3, Chiara Cimmino4,5
1CNR Institute of Biochemistry and Cell Biology, Monterotondo, Rome, 00015, Italy.
Insights
A new antibody, abEC1.1-hIgG1, effectively inhibits connexin 32 hemichannels (HCs), including those with mutations causing Charcot-Marie-Tooth disease type 1 (CMTX1). This offers a potential therapeutic strategy for CMTX1 and other connexin-related disorders.
Area of Science:
- Cellular Biology
- Neuroscience
- Immunology
Background:
- Connexins (Cxs), particularly Cx32, are vital for cell communication via gap junction channels and hemichannels (HCs).
- Mutations in GJB1, encoding Cx32, cause X-linked Charcot-Marie-Tooth type 1 (CMTX1), a peripheral nervous system disorder with no effective treatment.
- Cx32 HCs in Schwann cells are implicated in myelination through calcium signaling; pathological mutations lead to hyperactive or leaky HCs.
Purpose of the Study:
- To investigate the therapeutic potential of the monoclonal antibody abEC1.1-hIgG1 against wild-type (WT) and mutant Cx32 HCs.
- To evaluate the antibody's efficacy in inhibiting aberrant calcium uptake and release mediated by mutant Cx32 HCs.
- To elucidate the molecular interactions between the antibody and Cx32 HCs.
Main Methods:
- Utilized HeLa cells co-expressing Cx32 and a calcium biosensor (GCaMP6s) to assess HC activity.
- Measured calcium uptake, DAPI uptake, and ATP release in response to antibody treatment.
- Employed atomistic computational modeling to analyze antibody-Cx32 HC binding interactions.
Main Results:
- Mutant Cx32 HCs showed significantly higher calcium uptake compared to WT HCs.
- abEC1.1-hIgG1 dose-dependently inhibited calcium uptake, with nanomolar EC50 values for both WT and mutant HCs.
- The antibody suppressed DAPI and ATP release, indicating reduced HC permeability, and computational modeling revealed specific binding interactions.
Conclusions:
- abEC1.1-hIgG1 effectively inhibits both wild-type and mutant Cx32 hemichannels.
- This antibody demonstrates significant therapeutic potential for Charcot-Marie-Tooth type 1 and other diseases linked to Cx HCs.
- Findings support the development of next-generation antibodies targeting mutant Cx HCs for enhanced efficacy.
Abstract:
Connexins (Cxs) are fundamental in cell-cell communication, functioning as gap junction channels (GJCs) that facilitate solute exchange between adjacent cells and as hemichannels (HCs) that mediate solute exchange between the cytoplasm and the extracellular environment. Mutations in the GJB1 gene, which encodes Cx32, lead to X-linked Charcot-Marie-Tooth type 1 (CMTX1), a rare hereditary demyelinating disorder of the peripheral nervous system (PNS) without an effective cure or treatment. In Schwann cells, Cx32 HCs are thought to play a role in myelination by enhancing intracellular and intercellular Ca2+ signaling, which is crucial for proper PNS myelination. Single-point mutations (p.S85C, p.D178Y, p.F235C) generate pathological Cx32 HCs characterized by increased permeability ("leaky") or excessive activity ("hyperactive").We investigated the effects of abEC1.1-hIgG1, a fully human immunoglobulin G1 (hIgG1) monoclonal antibody, on wild-type (WT) and mutant Cx32D178Y HCs. Using HeLa DH cells conditionally co-expressing Cx and a genetically encoded Ca2+ biosensor (GCaMP6s), we demonstrated that mutant HCs facilitated 58% greater Ca2+ uptake in response to elevated extracellular Ca2+ concentrations ([Ca2+]ex) compared to WT HCs. abEC1.1-hIgG1 dose-dependently inhibited Ca2+ uptake, achieving a 50% inhibitory concentration (EC50) of ~ 10 nM for WT HCs and ~ 80 nM for mutant HCs. Additionally, the antibody suppressed DAPI uptake and ATP release. An atomistic computational model revealed that serine 56 (S56) of the antibody interacts with aspartate 178 (D178) of WT Cx32 HCs, contributing to binding affinity. Despite the p.D178Y mutation weakening this interaction, the antibody maintained binding to the mutant HC epitope at sub-micromolar concentrations.In conclusion, our study shows that abEC1.1-hIgG1 effectively inhibits both WT and mutant Cx32 HCs, highlighting its potential as a therapeutic approach for CMTX1. These findings expand the antibody's applicability for treating diseases associated with Cx HCs and inform the rational design of next-generation antibodies with enhanced affinity and efficacy against mutant HCs.
Related Concept Videos
Gap Junctions
Overview of Cell-Matrix Interactions

