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Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity

Caytaxin is a highly-conserved protein, which is encoded by the Atcay/ATCAY gene. Mutations in Atcay/ATCAY have been identified as causative of cerebellar disorders such as the rare hereditary disease Cayman ataxia in humans, generalized dystonia in the dystonic (dt) rat, and marked motor defects in...

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Autores principales: Sikora, Kristine M., Nosavanh, LaGina M., Kantheti, Prameela, Burmeister, Margit, Hortsch, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3511541/
https://www.ncbi.nlm.nih.gov/pubmed/23226316
http://dx.doi.org/10.1371/journal.pone.0050570
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author Sikora, Kristine M.
Nosavanh, LaGina M.
Kantheti, Prameela
Burmeister, Margit
Hortsch, Michael
author_facet Sikora, Kristine M.
Nosavanh, LaGina M.
Kantheti, Prameela
Burmeister, Margit
Hortsch, Michael
author_sort Sikora, Kristine M.
collection PubMed
description Caytaxin is a highly-conserved protein, which is encoded by the Atcay/ATCAY gene. Mutations in Atcay/ATCAY have been identified as causative of cerebellar disorders such as the rare hereditary disease Cayman ataxia in humans, generalized dystonia in the dystonic (dt) rat, and marked motor defects in three ataxic mouse lines. While several lines of evidence suggest that Caytaxin plays a critical role in maintaining nervous system processes, the physiological function of Caytaxin has not been fully characterized. In the study presented here, we generated novel specific monoclonal antibodies against full-length Caytaxin to examine endogenous Caytaxin expression in wild type and Atcay mutant mouse lines. Caytaxin protein is absent from brain tissues in the two severely ataxic Atcay(jit) (jittery) and Atcay(swd) (sidewinder) mutant lines, and markedly decreased in the mildly ataxic/dystonic Atcay(ji-hes) (hesitant) line, indicating a correlation between Caytaxin expression and disease severity. As the expression of wild type human Caytaxin in mutant sidewinder and jittery mice rescues the ataxic phenotype, Caytaxin’s physiological function appears to be conserved between the human and mouse orthologs. Across multiple species and in several neuronal cell lines Caytaxin is expressed as several protein isoforms, the two largest of which are caused by the usage of conserved methionine translation start sites. The work described in this manuscript presents an initial characterization of the Caytaxin protein and its expression in wild type and several mutant mouse models. Utilizing these animal models of human Cayman Ataxia will now allow an in-depth analysis to elucidate Caytaxin’s role in maintaining normal neuronal function.
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spelling pubmed-35115412012-12-05 Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity Sikora, Kristine M. Nosavanh, LaGina M. Kantheti, Prameela Burmeister, Margit Hortsch, Michael PLoS One Research Article Caytaxin is a highly-conserved protein, which is encoded by the Atcay/ATCAY gene. Mutations in Atcay/ATCAY have been identified as causative of cerebellar disorders such as the rare hereditary disease Cayman ataxia in humans, generalized dystonia in the dystonic (dt) rat, and marked motor defects in three ataxic mouse lines. While several lines of evidence suggest that Caytaxin plays a critical role in maintaining nervous system processes, the physiological function of Caytaxin has not been fully characterized. In the study presented here, we generated novel specific monoclonal antibodies against full-length Caytaxin to examine endogenous Caytaxin expression in wild type and Atcay mutant mouse lines. Caytaxin protein is absent from brain tissues in the two severely ataxic Atcay(jit) (jittery) and Atcay(swd) (sidewinder) mutant lines, and markedly decreased in the mildly ataxic/dystonic Atcay(ji-hes) (hesitant) line, indicating a correlation between Caytaxin expression and disease severity. As the expression of wild type human Caytaxin in mutant sidewinder and jittery mice rescues the ataxic phenotype, Caytaxin’s physiological function appears to be conserved between the human and mouse orthologs. Across multiple species and in several neuronal cell lines Caytaxin is expressed as several protein isoforms, the two largest of which are caused by the usage of conserved methionine translation start sites. The work described in this manuscript presents an initial characterization of the Caytaxin protein and its expression in wild type and several mutant mouse models. Utilizing these animal models of human Cayman Ataxia will now allow an in-depth analysis to elucidate Caytaxin’s role in maintaining normal neuronal function. Public Library of Science 2012-11-30 /pmc/articles/PMC3511541/ /pubmed/23226316 http://dx.doi.org/10.1371/journal.pone.0050570 Text en © 2012 Sikora 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
Sikora, Kristine M.
Nosavanh, LaGina M.
Kantheti, Prameela
Burmeister, Margit
Hortsch, Michael
Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity
title Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity
title_full Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity
title_fullStr Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity
title_full_unstemmed Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity
title_short Expression of Caytaxin Protein in Cayman Ataxia Mouse Models Correlates with Phenotype Severity
title_sort expression of caytaxin protein in cayman ataxia mouse models correlates with phenotype severity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3511541/
https://www.ncbi.nlm.nih.gov/pubmed/23226316
http://dx.doi.org/10.1371/journal.pone.0050570
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