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Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43

Mutations in Cx26 gene are found in most cases of human genetic deafness. Some mutations produce syndromic deafness associated with skin disorders, like Keratitis Ichthyosis Deafness syndrome (KID). Because in the human skin Cx26 is co-expressed with other connexins, like Cx43 and Cx30, and since KI...

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Autores principales: García, Isaac E., Maripillán, Jaime, Jara, Oscar, Ceriani, Ricardo, Palacios-Muñoz, Angelina, Ramachandran, Jayalakshimi, Olivero, Pablo, Pérez-Acle, Tomás, González, Carlos, Sáez, Juan C., Contreras, Jorge E., Martínez, Agustín D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4801018/
https://www.ncbi.nlm.nih.gov/pubmed/25625422
http://dx.doi.org/10.1038/jid.2015.20
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author García, Isaac E.
Maripillán, Jaime
Jara, Oscar
Ceriani, Ricardo
Palacios-Muñoz, Angelina
Ramachandran, Jayalakshimi
Olivero, Pablo
Pérez-Acle, Tomás
González, Carlos
Sáez, Juan C.
Contreras, Jorge E.
Martínez, Agustín D.
author_facet García, Isaac E.
Maripillán, Jaime
Jara, Oscar
Ceriani, Ricardo
Palacios-Muñoz, Angelina
Ramachandran, Jayalakshimi
Olivero, Pablo
Pérez-Acle, Tomás
González, Carlos
Sáez, Juan C.
Contreras, Jorge E.
Martínez, Agustín D.
author_sort García, Isaac E.
collection PubMed
description Mutations in Cx26 gene are found in most cases of human genetic deafness. Some mutations produce syndromic deafness associated with skin disorders, like Keratitis Ichthyosis Deafness syndrome (KID). Because in the human skin Cx26 is co-expressed with other connexins, like Cx43 and Cx30, and since KID syndrome is inherited as autosomal dominant condition, it is possible that KID mutations change the way Cx26 interacts with other co-expressed connexins. Indeed, some Cx26 syndromic mutations showed gap junction dominant negative effect when co-expressed with wild type connexins, including Cx26 and Cx43. The nature of these interactions and the consequences on hemichannels and gap junction channels functions remain unknown. In this study we demonstrate that syndromic mutations at the N-terminus segment of Cx26, change connexin oligomerization compatibility, allowing aberrant interactions with Cx43. Strikingly, heteromeric oligomer formed by Cx43/Cx26 (syndromic mutants) show exacerbated hemichannel activity, but nonfunctional gap junction channels; this also occurs for those Cx26 KID mutants that do not show functional homomeric hemichannels. Heterologous expression of these hyperactive heteromeric hemichannels increases cell membrane permeability, favoring ATP release and Ca(2+) overload. The functional paradox produced by oligomerization of Cx43 and Cx26 KID mutants could underlie the severe syndromic phenotype in human skin.
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spelling pubmed-48010182016-03-21 Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43 García, Isaac E. Maripillán, Jaime Jara, Oscar Ceriani, Ricardo Palacios-Muñoz, Angelina Ramachandran, Jayalakshimi Olivero, Pablo Pérez-Acle, Tomás González, Carlos Sáez, Juan C. Contreras, Jorge E. Martínez, Agustín D. J Invest Dermatol Article Mutations in Cx26 gene are found in most cases of human genetic deafness. Some mutations produce syndromic deafness associated with skin disorders, like Keratitis Ichthyosis Deafness syndrome (KID). Because in the human skin Cx26 is co-expressed with other connexins, like Cx43 and Cx30, and since KID syndrome is inherited as autosomal dominant condition, it is possible that KID mutations change the way Cx26 interacts with other co-expressed connexins. Indeed, some Cx26 syndromic mutations showed gap junction dominant negative effect when co-expressed with wild type connexins, including Cx26 and Cx43. The nature of these interactions and the consequences on hemichannels and gap junction channels functions remain unknown. In this study we demonstrate that syndromic mutations at the N-terminus segment of Cx26, change connexin oligomerization compatibility, allowing aberrant interactions with Cx43. Strikingly, heteromeric oligomer formed by Cx43/Cx26 (syndromic mutants) show exacerbated hemichannel activity, but nonfunctional gap junction channels; this also occurs for those Cx26 KID mutants that do not show functional homomeric hemichannels. Heterologous expression of these hyperactive heteromeric hemichannels increases cell membrane permeability, favoring ATP release and Ca(2+) overload. The functional paradox produced by oligomerization of Cx43 and Cx26 KID mutants could underlie the severe syndromic phenotype in human skin. 2015-01-27 2015-05 /pmc/articles/PMC4801018/ /pubmed/25625422 http://dx.doi.org/10.1038/jid.2015.20 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
García, Isaac E.
Maripillán, Jaime
Jara, Oscar
Ceriani, Ricardo
Palacios-Muñoz, Angelina
Ramachandran, Jayalakshimi
Olivero, Pablo
Pérez-Acle, Tomás
González, Carlos
Sáez, Juan C.
Contreras, Jorge E.
Martínez, Agustín D.
Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43
title Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43
title_full Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43
title_fullStr Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43
title_full_unstemmed Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43
title_short Keratitis-Ichthyosis-Deafness syndrome-associated Cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type Cx43
title_sort keratitis-ichthyosis-deafness syndrome-associated cx26 mutants produce nonfunctional gap junctions but hyperactive hemichannels when co-expressed with wild type cx43
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4801018/
https://www.ncbi.nlm.nih.gov/pubmed/25625422
http://dx.doi.org/10.1038/jid.2015.20
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