Literature DB >> 12064630

Functional analysis of a dominant mutation of human connexin26 associated with nonsyndromic deafness.

R Bruzzone1, D Gomès, E Denoyelle, N Duval, J Perea, V Veronesi, D Weil, C Petit, M M Gabellec, P D'Andrea, T W White.   

Abstract

Cx26 has been implicated in dominant (DFNA3) and recessive (DFNB1) forms of nonsyndromic sensorineural deafness. While most homozygous DFNB1 Cx26 mutations result in a simple loss of channel activity, it is less clear how heterozygous mutations in Cx26 linked to DFNA3 cause hearing loss. We have tested the ability of one dominant mutation (W44C) to interfere with wild-type human Cx26 (HCx26wt). HCx26wt induced robust electrical conductance between paired oocytes, and facilitated dye transfer between transfected HeLa cells. In contrast, oocyte pairs injected with only W44C were not electrically coupled above background levels, and W44C failed to dye couple transfected HeLa cells. Moreover, W44C dramatically inhibited intercellular conductance of HCx26wt when co-expressed in an equal ratio, and the low levels of residual conductance displayed altered gating properties. A nonfunctional recessive mutation (W77R) did not inhibit the ability of HCx26wt to form functional channels when co-injected in the same oocyte pairs, nor did it alter HCx26wt gating. These results provide evidence for a functional dominant negative effect of the W44C mutant on HCx26wt and explain how heterozygous Cx26 mutations could contribute to autosomal dominant deafness, by resulting in a net loss, and/or alteration, of Cx26 function.

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Year:  2001        PMID: 12064630     DOI: 10.3109/15419060109080765

Source DB:  PubMed          Journal:  Cell Commun Adhes        ISSN: 1543-5180


  10 in total

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2.  Role of the cytoplasmic loop domain of Cx43 in its intracellular localization and function: possible interaction with cadherin.

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Review 3.  Two Iranian families with a novel mutation in GJB2 causing autosomal dominant nonsyndromic hearing loss.

Authors:  Niloofar Bazazzadegan; Abraham M Sheffield; Masoomeh Sobhani; Kimia Kahrizi; Nicole C Meyer; Guy Van Camp; Nele Hilgert; Seyedeh Sedigheh Abedini; Farkhondeh Habibi; Ahmad Daneshi; Carla Nishimura; Matthew R Avenarius; Mohammad Farhadi; Richard J H Smith; Hossein Najmabadi
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4.  Trafficking abnormality and ER stress underlie functional deficiency of hearing impairment-associated connexin-31 mutants.

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5.  Calcium interactions with Cx26 hemmichannel: Spatial association between MD simulations biding sites and variant pathogenicity.

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6.  Comprehensive interpretation of single-nucleotide substitutions in GJB2 reveals the genetic and phenotypic landscape of GJB2-related hearing loss.

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Journal:  Hum Genet       Date:  2022-09-01       Impact factor: 5.881

Review 7.  Diverse deafness mechanisms of connexin mutations revealed by studies using in vitro approaches and mouse models.

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Review 9.  Gap-junction channels dysfunction in deafness and hearing loss.

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Review 10.  Connexinopathies: a structural and functional glimpse.

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Journal:  BMC Cell Biol       Date:  2016-05-24       Impact factor: 4.241

  10 in total

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