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Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK

CILK1 (ciliogenesis associated kinase 1)/ICK (intestinal cell kinase) is a highly conserved protein kinase that regulates primary cilia structure and function. CILK1 mutations cause a wide spectrum of human diseases collectively called ciliopathies. While several CILK1 heterozygous variants have bee...

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Autores principales: Salvati, Kathryn A., Mason, Ashley J., Gailey, Casey D., Wang, Eric J., Fu, Zheng, Beenhakker, Mark P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8396347/
https://www.ncbi.nlm.nih.gov/pubmed/34445580
http://dx.doi.org/10.3390/ijms22168875
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author Salvati, Kathryn A.
Mason, Ashley J.
Gailey, Casey D.
Wang, Eric J.
Fu, Zheng
Beenhakker, Mark P.
author_facet Salvati, Kathryn A.
Mason, Ashley J.
Gailey, Casey D.
Wang, Eric J.
Fu, Zheng
Beenhakker, Mark P.
author_sort Salvati, Kathryn A.
collection PubMed
description CILK1 (ciliogenesis associated kinase 1)/ICK (intestinal cell kinase) is a highly conserved protein kinase that regulates primary cilia structure and function. CILK1 mutations cause a wide spectrum of human diseases collectively called ciliopathies. While several CILK1 heterozygous variants have been recently linked to juvenile myoclonic epilepsy (JME), it remains unclear whether these mutations cause seizures. Herein, we investigated whether mice harboring either a heterozygous null Cilk1 (Cilk1(+/−)) mutation or a heterozygous loss-of-function Cilk1 mutation (Cilk1(R272Q/+)) have epilepsy. We first evaluated the spontaneous seizure phenotype of Cilk1(+/−) and Cilk1(R272Q/+) mice relative to wildtype littermates. We observed no electrographic differences among the three mouse genotypes during prolonged recordings. We also evaluated electrographic and behavioral responses of mice recovering from isoflurane anesthesia, an approach recently used to measure seizure-like activity. Again, we observed no electrographic or behavioral differences in control versus Cilk1(+/−) and Cilk1(R272Q/+) mice upon isoflurane recovery. These results indicate that mice bearing a non-functional copy of Cilk1 fail to produce electrographic patterns resembling those of JME patients with a variant CILK1 copy. Our findings argue against CILK1 haploinsufficiency being the mechanism that links CILK1 variants to JME.
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spelling pubmed-83963472021-08-28 Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK Salvati, Kathryn A. Mason, Ashley J. Gailey, Casey D. Wang, Eric J. Fu, Zheng Beenhakker, Mark P. Int J Mol Sci Article CILK1 (ciliogenesis associated kinase 1)/ICK (intestinal cell kinase) is a highly conserved protein kinase that regulates primary cilia structure and function. CILK1 mutations cause a wide spectrum of human diseases collectively called ciliopathies. While several CILK1 heterozygous variants have been recently linked to juvenile myoclonic epilepsy (JME), it remains unclear whether these mutations cause seizures. Herein, we investigated whether mice harboring either a heterozygous null Cilk1 (Cilk1(+/−)) mutation or a heterozygous loss-of-function Cilk1 mutation (Cilk1(R272Q/+)) have epilepsy. We first evaluated the spontaneous seizure phenotype of Cilk1(+/−) and Cilk1(R272Q/+) mice relative to wildtype littermates. We observed no electrographic differences among the three mouse genotypes during prolonged recordings. We also evaluated electrographic and behavioral responses of mice recovering from isoflurane anesthesia, an approach recently used to measure seizure-like activity. Again, we observed no electrographic or behavioral differences in control versus Cilk1(+/−) and Cilk1(R272Q/+) mice upon isoflurane recovery. These results indicate that mice bearing a non-functional copy of Cilk1 fail to produce electrographic patterns resembling those of JME patients with a variant CILK1 copy. Our findings argue against CILK1 haploinsufficiency being the mechanism that links CILK1 variants to JME. MDPI 2021-08-18 /pmc/articles/PMC8396347/ /pubmed/34445580 http://dx.doi.org/10.3390/ijms22168875 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Salvati, Kathryn A.
Mason, Ashley J.
Gailey, Casey D.
Wang, Eric J.
Fu, Zheng
Beenhakker, Mark P.
Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK
title Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK
title_full Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK
title_fullStr Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK
title_full_unstemmed Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK
title_short Mice Harboring a Non-Functional CILK1/ICK Allele Fail to Model the Epileptic Phenotype in Patients Carrying Variant CILK1/ICK
title_sort mice harboring a non-functional cilk1/ick allele fail to model the epileptic phenotype in patients carrying variant cilk1/ick
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8396347/
https://www.ncbi.nlm.nih.gov/pubmed/34445580
http://dx.doi.org/10.3390/ijms22168875
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