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.