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Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine

Keratitis-ichthyosis-deafness (KID) syndrome is an ectodermal dysplasia caused by dominant mutations of connexin26 (Cx26). Loss of Cx26 function causes non-syndromic sensorineural deafness, without consequence in the epidermis. Functional analyses have revealed that a majority of KID-causing mutatio...

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Autores principales: Levit, Noah A., Sellitto, Caterina, Wang, Hong-Zhan, Li, Leping, Srinivas, Miduturu, Brink, Peter R., White, Thomas W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4363291/
https://www.ncbi.nlm.nih.gov/pubmed/25229253
http://dx.doi.org/10.1038/jid.2014.408
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author Levit, Noah A.
Sellitto, Caterina
Wang, Hong-Zhan
Li, Leping
Srinivas, Miduturu
Brink, Peter R.
White, Thomas W.
author_facet Levit, Noah A.
Sellitto, Caterina
Wang, Hong-Zhan
Li, Leping
Srinivas, Miduturu
Brink, Peter R.
White, Thomas W.
author_sort Levit, Noah A.
collection PubMed
description Keratitis-ichthyosis-deafness (KID) syndrome is an ectodermal dysplasia caused by dominant mutations of connexin26 (Cx26). Loss of Cx26 function causes non-syndromic sensorineural deafness, without consequence in the epidermis. Functional analyses have revealed that a majority of KID-causing mutations confer a novel expansion of hemichannel activity, mediated by connexin channels in a non-junctional configuration. Inappropriate Cx26 hemichannel opening is hypothesized to compromise keratinocyte integrity and epidermal homeostasis. Pharmacological modulators of Cx26 are needed to assess the pathomechanistic involvement of hemichannels in the development of hyperkeratosis in KID syndrome. We have used electrophysiological assays to evaluate small molecule analogs of quinine for suppressive effects on aberrant hemichannel currents elicited by KID mutations. Here, we show that mefloquine inhibits several mutant hemichannel forms implicated in KID syndrome when expressed in Xenopus laevis oocytes (IC(50)≈16µM), using an extracellular divalent cation, zinc (Zn(++)), as a non-specific positive control for comparison (IC(50)≈3µM). Furthermore, we used freshly isolated transgenic keratinocytes to show that micromolar concentrations of mefloquine attenuated increased macroscopic membrane currents in primary mouse keratinocytes expressing human Cx26-G45E, a mutation causing a lethal form of KID syndrome.
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spelling pubmed-43632912015-10-01 Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine Levit, Noah A. Sellitto, Caterina Wang, Hong-Zhan Li, Leping Srinivas, Miduturu Brink, Peter R. White, Thomas W. J Invest Dermatol Article Keratitis-ichthyosis-deafness (KID) syndrome is an ectodermal dysplasia caused by dominant mutations of connexin26 (Cx26). Loss of Cx26 function causes non-syndromic sensorineural deafness, without consequence in the epidermis. Functional analyses have revealed that a majority of KID-causing mutations confer a novel expansion of hemichannel activity, mediated by connexin channels in a non-junctional configuration. Inappropriate Cx26 hemichannel opening is hypothesized to compromise keratinocyte integrity and epidermal homeostasis. Pharmacological modulators of Cx26 are needed to assess the pathomechanistic involvement of hemichannels in the development of hyperkeratosis in KID syndrome. We have used electrophysiological assays to evaluate small molecule analogs of quinine for suppressive effects on aberrant hemichannel currents elicited by KID mutations. Here, we show that mefloquine inhibits several mutant hemichannel forms implicated in KID syndrome when expressed in Xenopus laevis oocytes (IC(50)≈16µM), using an extracellular divalent cation, zinc (Zn(++)), as a non-specific positive control for comparison (IC(50)≈3µM). Furthermore, we used freshly isolated transgenic keratinocytes to show that micromolar concentrations of mefloquine attenuated increased macroscopic membrane currents in primary mouse keratinocytes expressing human Cx26-G45E, a mutation causing a lethal form of KID syndrome. 2014-09-17 2015-04 /pmc/articles/PMC4363291/ /pubmed/25229253 http://dx.doi.org/10.1038/jid.2014.408 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
Levit, Noah A.
Sellitto, Caterina
Wang, Hong-Zhan
Li, Leping
Srinivas, Miduturu
Brink, Peter R.
White, Thomas W.
Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
title Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
title_full Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
title_fullStr Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
title_full_unstemmed Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
title_short Aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
title_sort aberrant connexin26 hemichannels underlying keratitis-ichthyosis-deafness syndrome are potently inhibited by mefloquine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4363291/
https://www.ncbi.nlm.nih.gov/pubmed/25229253
http://dx.doi.org/10.1038/jid.2014.408
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