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Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis

INTRODUCTION: Periodic paralyses (PP) are recurrent episodes of flaccid limb muscle weakness. Next to autosomal dominant forms, sporadic PP (SPP) cases are known but their genetics are unclear. METHODS: In a patient with hypokalemic SPP, we performed exome sequencing to identify a candidate gene. We...

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Autores principales: FAN, CHUNXIANG, KUHN, MARIUS, MBIOL, ALEXANDER PEPLER, GROOME, JAMES, WINSTON, VERN, BISKUP, SASKIA, LEHMANN-HORN, FRANK, JURKAT-ROTT, KARIN
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pacini Editore srl 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6390110/
https://www.ncbi.nlm.nih.gov/pubmed/30838349
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author FAN, CHUNXIANG
KUHN, MARIUS
MBIOL, ALEXANDER PEPLER
GROOME, JAMES
WINSTON, VERN
BISKUP, SASKIA
LEHMANN-HORN, FRANK
JURKAT-ROTT, KARIN
author_facet FAN, CHUNXIANG
KUHN, MARIUS
MBIOL, ALEXANDER PEPLER
GROOME, JAMES
WINSTON, VERN
BISKUP, SASKIA
LEHMANN-HORN, FRANK
JURKAT-ROTT, KARIN
author_sort FAN, CHUNXIANG
collection PubMed
description INTRODUCTION: Periodic paralyses (PP) are recurrent episodes of flaccid limb muscle weakness. Next to autosomal dominant forms, sporadic PP (SPP) cases are known but their genetics are unclear. METHODS: In a patient with hypokalemic SPP, we performed exome sequencing to identify a candidate gene. We sequenced this gene in 263 unrelated PP patients without any known causative mutations. Then we performed functional analysis of all variants found and molecular modelling for interpretation. RESULTS: Exome sequencing in the proband yielded three heterozygous variants predicted to be linked to disease. These encoded p.Thr140Met in the Kir2.2 potassium channel, p.Asp229Asn in protein kinase C theta, and p.Thr15943Ile in titin. Since all hitherto known causative PP genes code for ion channels, we studied the Kir2.2-encoding gene, KCNJ12, for involvement in PP pathogenesis. KCNJ12 screening in 263 PP patients revealed three further variants, each in a single individual and coding for p.Gly419Ser, p.Cys75Tyr, and p.Ile283Val. All four Kir2.2 variants were functionally expressed. Only p.Thr140Met displayed relevant functional alterations, i.e. homo-tetrameric channels produced almost no current, and hetero-tetrameric channels suppressed co-expressed wildtype Kir2.1 in a dominant-negative manner. Molecular modelling showed Kir2.2 p.Thr140Met to reduce movement of potassium ions towards binding sites in the hetero-tetramer pore compatible with a reduced maximal current. MD simulations revealed loss of hydrogen bonding with the p.Thr140Met substitution. DISCUSSION: The electrophysiological findings of p.Thr140Met are similar to those found in thyrotoxic PP caused by Kir2.6 mutations. Also, the homologous Thr140 residue is mutated in Kir2.6. This supports the idea that Kir2.2 p.Thr140Met conveys susceptibility to SPP and should be included in genetic screening.
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spelling pubmed-63901102019-03-05 Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis FAN, CHUNXIANG KUHN, MARIUS MBIOL, ALEXANDER PEPLER GROOME, JAMES WINSTON, VERN BISKUP, SASKIA LEHMANN-HORN, FRANK JURKAT-ROTT, KARIN Acta Myol Original Article INTRODUCTION: Periodic paralyses (PP) are recurrent episodes of flaccid limb muscle weakness. Next to autosomal dominant forms, sporadic PP (SPP) cases are known but their genetics are unclear. METHODS: In a patient with hypokalemic SPP, we performed exome sequencing to identify a candidate gene. We sequenced this gene in 263 unrelated PP patients without any known causative mutations. Then we performed functional analysis of all variants found and molecular modelling for interpretation. RESULTS: Exome sequencing in the proband yielded three heterozygous variants predicted to be linked to disease. These encoded p.Thr140Met in the Kir2.2 potassium channel, p.Asp229Asn in protein kinase C theta, and p.Thr15943Ile in titin. Since all hitherto known causative PP genes code for ion channels, we studied the Kir2.2-encoding gene, KCNJ12, for involvement in PP pathogenesis. KCNJ12 screening in 263 PP patients revealed three further variants, each in a single individual and coding for p.Gly419Ser, p.Cys75Tyr, and p.Ile283Val. All four Kir2.2 variants were functionally expressed. Only p.Thr140Met displayed relevant functional alterations, i.e. homo-tetrameric channels produced almost no current, and hetero-tetrameric channels suppressed co-expressed wildtype Kir2.1 in a dominant-negative manner. Molecular modelling showed Kir2.2 p.Thr140Met to reduce movement of potassium ions towards binding sites in the hetero-tetramer pore compatible with a reduced maximal current. MD simulations revealed loss of hydrogen bonding with the p.Thr140Met substitution. DISCUSSION: The electrophysiological findings of p.Thr140Met are similar to those found in thyrotoxic PP caused by Kir2.6 mutations. Also, the homologous Thr140 residue is mutated in Kir2.6. This supports the idea that Kir2.2 p.Thr140Met conveys susceptibility to SPP and should be included in genetic screening. Pacini Editore srl 2018-09-01 /pmc/articles/PMC6390110/ /pubmed/30838349 Text en ©2018 Gaetano Conte Academy, Naples, Italy http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), which permits for noncommercial use, distribution, and reproduction in any digital medium, provided the original work is properly cited and is not altered in any way. For details, please refer to https://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
FAN, CHUNXIANG
KUHN, MARIUS
MBIOL, ALEXANDER PEPLER
GROOME, JAMES
WINSTON, VERN
BISKUP, SASKIA
LEHMANN-HORN, FRANK
JURKAT-ROTT, KARIN
Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis
title Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis
title_full Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis
title_fullStr Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis
title_full_unstemmed Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis
title_short Kir2.2 p.Thr140Met: a genetic susceptibility to sporadic periodic paralysis
title_sort kir2.2 p.thr140met: a genetic susceptibility to sporadic periodic paralysis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6390110/
https://www.ncbi.nlm.nih.gov/pubmed/30838349
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