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Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage

Claudins constitute the major component of tight junctions and regulate paracellular permeability of epithelia. Claudin-10 occurs in two major isoforms that form paracellular channels with ion selectivity. We report on two families segregating an autosomal recessive disorder characterized by general...

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Autores principales: Klar, Joakim, Piontek, Jörg, Milatz, Susanne, Tariq, Muhammad, Jameel, Muhammad, Breiderhoff, Tilman, Schuster, Jens, Fatima, Ambrin, Asif, Maria, Sher, Muhammad, Mäbert, Katrin, Fromm, Anja, Baig, Shahid M., Günzel, Dorothee, Dahl, Niklas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5521874/
https://www.ncbi.nlm.nih.gov/pubmed/28686597
http://dx.doi.org/10.1371/journal.pgen.1006897
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author Klar, Joakim
Piontek, Jörg
Milatz, Susanne
Tariq, Muhammad
Jameel, Muhammad
Breiderhoff, Tilman
Schuster, Jens
Fatima, Ambrin
Asif, Maria
Sher, Muhammad
Mäbert, Katrin
Fromm, Anja
Baig, Shahid M.
Günzel, Dorothee
Dahl, Niklas
author_facet Klar, Joakim
Piontek, Jörg
Milatz, Susanne
Tariq, Muhammad
Jameel, Muhammad
Breiderhoff, Tilman
Schuster, Jens
Fatima, Ambrin
Asif, Maria
Sher, Muhammad
Mäbert, Katrin
Fromm, Anja
Baig, Shahid M.
Günzel, Dorothee
Dahl, Niklas
author_sort Klar, Joakim
collection PubMed
description Claudins constitute the major component of tight junctions and regulate paracellular permeability of epithelia. Claudin-10 occurs in two major isoforms that form paracellular channels with ion selectivity. We report on two families segregating an autosomal recessive disorder characterized by generalized anhidrosis, severe heat intolerance and mild kidney failure. All affected individuals carry a rare homozygous missense mutation c.144C>G, p.(N48K) specific for the claudin-10b isoform. Immunostaining of sweat glands from patients suggested that the disease is associated with reduced levels of claudin-10b in the plasma membranes and in canaliculi of the secretory portion. Expression of claudin-10b N48K in a 3D cell model of sweat secretion indicated perturbed paracellular Na(+) transport. Analysis of paracellular permeability revealed that claudin-10b N48K maintained cation over anion selectivity but with a reduced general ion conductance. Furthermore, freeze fracture electron microscopy showed that claudin-10b N48K was associated with impaired tight junction strand formation and altered cis-oligomer formation. These data suggest that claudin-10b N48K causes anhidrosis and our findings are consistent with a combined effect from perturbed TJ function and increased degradation of claudin-10b N48K in the sweat glands. Furthermore, affected individuals present with Mg(2+) retention, secondary hyperparathyroidism and mild kidney failure that suggest a disturbed reabsorption of cations in the kidneys. These renal-derived features recapitulate several phenotypic aspects detected in mice with kidney specific loss of both claudin-10 isoforms. Our study adds to the spectrum of phenotypes caused by tight junction proteins and demonstrates a pivotal role for claudin-10b in maintaining paracellular Na(+) permeability for sweat production and kidney function.
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spelling pubmed-55218742017-08-07 Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage Klar, Joakim Piontek, Jörg Milatz, Susanne Tariq, Muhammad Jameel, Muhammad Breiderhoff, Tilman Schuster, Jens Fatima, Ambrin Asif, Maria Sher, Muhammad Mäbert, Katrin Fromm, Anja Baig, Shahid M. Günzel, Dorothee Dahl, Niklas PLoS Genet Research Article Claudins constitute the major component of tight junctions and regulate paracellular permeability of epithelia. Claudin-10 occurs in two major isoforms that form paracellular channels with ion selectivity. We report on two families segregating an autosomal recessive disorder characterized by generalized anhidrosis, severe heat intolerance and mild kidney failure. All affected individuals carry a rare homozygous missense mutation c.144C>G, p.(N48K) specific for the claudin-10b isoform. Immunostaining of sweat glands from patients suggested that the disease is associated with reduced levels of claudin-10b in the plasma membranes and in canaliculi of the secretory portion. Expression of claudin-10b N48K in a 3D cell model of sweat secretion indicated perturbed paracellular Na(+) transport. Analysis of paracellular permeability revealed that claudin-10b N48K maintained cation over anion selectivity but with a reduced general ion conductance. Furthermore, freeze fracture electron microscopy showed that claudin-10b N48K was associated with impaired tight junction strand formation and altered cis-oligomer formation. These data suggest that claudin-10b N48K causes anhidrosis and our findings are consistent with a combined effect from perturbed TJ function and increased degradation of claudin-10b N48K in the sweat glands. Furthermore, affected individuals present with Mg(2+) retention, secondary hyperparathyroidism and mild kidney failure that suggest a disturbed reabsorption of cations in the kidneys. These renal-derived features recapitulate several phenotypic aspects detected in mice with kidney specific loss of both claudin-10 isoforms. Our study adds to the spectrum of phenotypes caused by tight junction proteins and demonstrates a pivotal role for claudin-10b in maintaining paracellular Na(+) permeability for sweat production and kidney function. Public Library of Science 2017-07-07 /pmc/articles/PMC5521874/ /pubmed/28686597 http://dx.doi.org/10.1371/journal.pgen.1006897 Text en © 2017 Klar et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Klar, Joakim
Piontek, Jörg
Milatz, Susanne
Tariq, Muhammad
Jameel, Muhammad
Breiderhoff, Tilman
Schuster, Jens
Fatima, Ambrin
Asif, Maria
Sher, Muhammad
Mäbert, Katrin
Fromm, Anja
Baig, Shahid M.
Günzel, Dorothee
Dahl, Niklas
Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage
title Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage
title_full Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage
title_fullStr Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage
title_full_unstemmed Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage
title_short Altered paracellular cation permeability due to a rare CLDN10B variant causes anhidrosis and kidney damage
title_sort altered paracellular cation permeability due to a rare cldn10b variant causes anhidrosis and kidney damage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5521874/
https://www.ncbi.nlm.nih.gov/pubmed/28686597
http://dx.doi.org/10.1371/journal.pgen.1006897
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