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Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia

The shaker rat is an X-linked recessive spontaneous model of progressive Purkinje cell (PC) degeneration exhibiting a shaking ataxia and wide stance. Generation of Wistar Furth (WF)/Brown Norwegian (BN) F1 hybrids and genetic mapping of F2 sib-sib offspring using polymorphic markers narrowed the can...

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Autores principales: Figueroa, Karla P., Paul, Sharan, Calì, Tito, Lopreiato, Raffaele, Karan, Sukanya, Frizzarin, Martina, Ames, Darren, Zanni, Ginevra, Brini, Marisa, Dansithong, Warunee, Milash, Brett, Scoles, Daniel R., Carafoli, Ernesto, Pulst, Stefan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892658/
https://www.ncbi.nlm.nih.gov/pubmed/27013529
http://dx.doi.org/10.1242/dmm.022848
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author Figueroa, Karla P.
Paul, Sharan
Calì, Tito
Lopreiato, Raffaele
Karan, Sukanya
Frizzarin, Martina
Ames, Darren
Zanni, Ginevra
Brini, Marisa
Dansithong, Warunee
Milash, Brett
Scoles, Daniel R.
Carafoli, Ernesto
Pulst, Stefan M.
author_facet Figueroa, Karla P.
Paul, Sharan
Calì, Tito
Lopreiato, Raffaele
Karan, Sukanya
Frizzarin, Martina
Ames, Darren
Zanni, Ginevra
Brini, Marisa
Dansithong, Warunee
Milash, Brett
Scoles, Daniel R.
Carafoli, Ernesto
Pulst, Stefan M.
author_sort Figueroa, Karla P.
collection PubMed
description The shaker rat is an X-linked recessive spontaneous model of progressive Purkinje cell (PC) degeneration exhibiting a shaking ataxia and wide stance. Generation of Wistar Furth (WF)/Brown Norwegian (BN) F1 hybrids and genetic mapping of F2 sib-sib offspring using polymorphic markers narrowed the candidate gene region to 26 Mbp denoted by the last recombinant genetic marker DXRat21 at 133 Mbp to qter (the end of the long arm). In the WF background, the shaker mutation has complete penetrance, results in a stereotypic phenotype and there is a narrow window for age of disease onset; by contrast, the F2 hybrid phenotype was more varied, with a later age of onset and likely non-penetrance of the mutation. By deep RNA-sequencing, five variants were found in the candidate region; four were novel without known annotation. One of the variants caused an arginine (R) to cysteine (C) change at codon 35 of the ATPase, Ca(2+) transporting, plasma membrane 3 (Atp2b3) gene encoding PMCA3 that has high expression in the cerebellum. The variant was well supported by hundreds of overlapping reads, and was found in 100% of all affected replicas and 0% of the wild-type (WT) replicas. The mutation segregated with disease in all affected animals and the amino acid change was found in an evolutionarily conserved region of PMCA3. Despite strong genetic evidence for pathogenicity, in vitro analyses of PMCA3(R35C) function did not show any differences to WT PMCA3. Because Atp2b3 mutation leads to congenital ataxia in humans, the identified Atp2b3 missense change in the shaker rat presents a good candidate for the shaker rat phenotype based on genetic criteria, but cannot yet be considered a definite pathogenic variant owing to lack of functional changes.
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spelling pubmed-48926582016-06-16 Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia Figueroa, Karla P. Paul, Sharan Calì, Tito Lopreiato, Raffaele Karan, Sukanya Frizzarin, Martina Ames, Darren Zanni, Ginevra Brini, Marisa Dansithong, Warunee Milash, Brett Scoles, Daniel R. Carafoli, Ernesto Pulst, Stefan M. Dis Model Mech Research Article The shaker rat is an X-linked recessive spontaneous model of progressive Purkinje cell (PC) degeneration exhibiting a shaking ataxia and wide stance. Generation of Wistar Furth (WF)/Brown Norwegian (BN) F1 hybrids and genetic mapping of F2 sib-sib offspring using polymorphic markers narrowed the candidate gene region to 26 Mbp denoted by the last recombinant genetic marker DXRat21 at 133 Mbp to qter (the end of the long arm). In the WF background, the shaker mutation has complete penetrance, results in a stereotypic phenotype and there is a narrow window for age of disease onset; by contrast, the F2 hybrid phenotype was more varied, with a later age of onset and likely non-penetrance of the mutation. By deep RNA-sequencing, five variants were found in the candidate region; four were novel without known annotation. One of the variants caused an arginine (R) to cysteine (C) change at codon 35 of the ATPase, Ca(2+) transporting, plasma membrane 3 (Atp2b3) gene encoding PMCA3 that has high expression in the cerebellum. The variant was well supported by hundreds of overlapping reads, and was found in 100% of all affected replicas and 0% of the wild-type (WT) replicas. The mutation segregated with disease in all affected animals and the amino acid change was found in an evolutionarily conserved region of PMCA3. Despite strong genetic evidence for pathogenicity, in vitro analyses of PMCA3(R35C) function did not show any differences to WT PMCA3. Because Atp2b3 mutation leads to congenital ataxia in humans, the identified Atp2b3 missense change in the shaker rat presents a good candidate for the shaker rat phenotype based on genetic criteria, but cannot yet be considered a definite pathogenic variant owing to lack of functional changes. The Company of Biologists Ltd 2016-05-01 /pmc/articles/PMC4892658/ /pubmed/27013529 http://dx.doi.org/10.1242/dmm.022848 Text en © 2016. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Figueroa, Karla P.
Paul, Sharan
Calì, Tito
Lopreiato, Raffaele
Karan, Sukanya
Frizzarin, Martina
Ames, Darren
Zanni, Ginevra
Brini, Marisa
Dansithong, Warunee
Milash, Brett
Scoles, Daniel R.
Carafoli, Ernesto
Pulst, Stefan M.
Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia
title Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia
title_full Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia
title_fullStr Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia
title_full_unstemmed Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia
title_short Spontaneous shaker rat mutant – a new model for X-linked tremor/ataxia
title_sort spontaneous shaker rat mutant – a new model for x-linked tremor/ataxia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892658/
https://www.ncbi.nlm.nih.gov/pubmed/27013529
http://dx.doi.org/10.1242/dmm.022848
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