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Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination

We describe a novel spontaneous mouse mutant, laggard (lag), characterized by a flat head, motor impairment and growth retardation. The mutation is inherited as an autosomal recessive trait, and lag/lag mice suffer from cerebellar ataxia and die before weaning. lag/lag mice exhibit a dramatic reduct...

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Autores principales: Fujikura, Kohei, Setsu, Tomiyoshi, Tanigaki, Kenji, Abe, Takaya, Kiyonari, Hiroshi, Terashima, Toshio, Sakisaka, Toshiaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3537622/
https://www.ncbi.nlm.nih.gov/pubmed/23308235
http://dx.doi.org/10.1371/journal.pone.0053490
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author Fujikura, Kohei
Setsu, Tomiyoshi
Tanigaki, Kenji
Abe, Takaya
Kiyonari, Hiroshi
Terashima, Toshio
Sakisaka, Toshiaki
author_facet Fujikura, Kohei
Setsu, Tomiyoshi
Tanigaki, Kenji
Abe, Takaya
Kiyonari, Hiroshi
Terashima, Toshio
Sakisaka, Toshiaki
author_sort Fujikura, Kohei
collection PubMed
description We describe a novel spontaneous mouse mutant, laggard (lag), characterized by a flat head, motor impairment and growth retardation. The mutation is inherited as an autosomal recessive trait, and lag/lag mice suffer from cerebellar ataxia and die before weaning. lag/lag mice exhibit a dramatic reduction in brain size and slender optic nerves. By positional cloning, we identify a splice site mutation in Kif14. Transgenic complementation with wild-type Kif14-cDNA alleviates ataxic phenotype in lag/lag mice. To further confirm that the causative gene is Kif14, we generate Kif14 knockout mice and find that all of the phenotypes of Kif14 knockout mice are similar to those of lag/lag mice. The main morphological abnormality of lag/lag mouse is severe hypomyelination in central nervous system. The lag/lag mice express an array of myelin-related genes at significantly reduced levels. The disrupted cytoarchitecture of the cerebellar and cerebral cortices appears to result from apoptotic cell death. Thus, we conclude that Kif14 is essential for the generation and maturation of late-developing structures such as the myelin sheath, cerebellar and cerebral cortices. So far, no Kif14-deficient mice or mutation in Kif14 has ever been reported and we firstly define the biological function of Kif14 in vivo. The discovery of mammalian models, laggard, has opened up horizons for researchers to add more knowledge regarding the etiology and pathology of brain malformation.
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spelling pubmed-35376222013-01-10 Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination Fujikura, Kohei Setsu, Tomiyoshi Tanigaki, Kenji Abe, Takaya Kiyonari, Hiroshi Terashima, Toshio Sakisaka, Toshiaki PLoS One Research Article We describe a novel spontaneous mouse mutant, laggard (lag), characterized by a flat head, motor impairment and growth retardation. The mutation is inherited as an autosomal recessive trait, and lag/lag mice suffer from cerebellar ataxia and die before weaning. lag/lag mice exhibit a dramatic reduction in brain size and slender optic nerves. By positional cloning, we identify a splice site mutation in Kif14. Transgenic complementation with wild-type Kif14-cDNA alleviates ataxic phenotype in lag/lag mice. To further confirm that the causative gene is Kif14, we generate Kif14 knockout mice and find that all of the phenotypes of Kif14 knockout mice are similar to those of lag/lag mice. The main morphological abnormality of lag/lag mouse is severe hypomyelination in central nervous system. The lag/lag mice express an array of myelin-related genes at significantly reduced levels. The disrupted cytoarchitecture of the cerebellar and cerebral cortices appears to result from apoptotic cell death. Thus, we conclude that Kif14 is essential for the generation and maturation of late-developing structures such as the myelin sheath, cerebellar and cerebral cortices. So far, no Kif14-deficient mice or mutation in Kif14 has ever been reported and we firstly define the biological function of Kif14 in vivo. The discovery of mammalian models, laggard, has opened up horizons for researchers to add more knowledge regarding the etiology and pathology of brain malformation. Public Library of Science 2013-01-04 /pmc/articles/PMC3537622/ /pubmed/23308235 http://dx.doi.org/10.1371/journal.pone.0053490 Text en © 2013 Fujikura 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fujikura, Kohei
Setsu, Tomiyoshi
Tanigaki, Kenji
Abe, Takaya
Kiyonari, Hiroshi
Terashima, Toshio
Sakisaka, Toshiaki
Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination
title Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination
title_full Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination
title_fullStr Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination
title_full_unstemmed Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination
title_short Kif14 Mutation Causes Severe Brain Malformation and Hypomyelination
title_sort kif14 mutation causes severe brain malformation and hypomyelination
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3537622/
https://www.ncbi.nlm.nih.gov/pubmed/23308235
http://dx.doi.org/10.1371/journal.pone.0053490
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