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Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration

Wolfram syndrome (WS) is a rare autosomal-recessive disorder that is caused by mutations in the WFS1 gene and is characterized by juvenile-onset diabetes, optic atrophy, hearing loss and a number of other complications. Here, we describe the creation and phenotype of Wfs1 mutant rats, in which exon...

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Autores principales: Plaas, Mario, Seppa, Kadri, Reimets, Riin, Jagomäe, Toomas, Toots, Maarja, Koppel, Tuuliki, Vallisoo, Tuuli, Nigul, Mait, Heinla, Indrek, Meier, Riho, Kaasik, Allen, Piirsoo, Andres, Hickey, Miriam A., Terasmaa, Anton, Vasar, Eero
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5579261/
https://www.ncbi.nlm.nih.gov/pubmed/28860598
http://dx.doi.org/10.1038/s41598-017-09392-x
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author Plaas, Mario
Seppa, Kadri
Reimets, Riin
Jagomäe, Toomas
Toots, Maarja
Koppel, Tuuliki
Vallisoo, Tuuli
Nigul, Mait
Heinla, Indrek
Meier, Riho
Kaasik, Allen
Piirsoo, Andres
Hickey, Miriam A.
Terasmaa, Anton
Vasar, Eero
author_facet Plaas, Mario
Seppa, Kadri
Reimets, Riin
Jagomäe, Toomas
Toots, Maarja
Koppel, Tuuliki
Vallisoo, Tuuli
Nigul, Mait
Heinla, Indrek
Meier, Riho
Kaasik, Allen
Piirsoo, Andres
Hickey, Miriam A.
Terasmaa, Anton
Vasar, Eero
author_sort Plaas, Mario
collection PubMed
description Wolfram syndrome (WS) is a rare autosomal-recessive disorder that is caused by mutations in the WFS1 gene and is characterized by juvenile-onset diabetes, optic atrophy, hearing loss and a number of other complications. Here, we describe the creation and phenotype of Wfs1 mutant rats, in which exon 5 of the Wfs1 gene is deleted, resulting in a loss of 27 amino acids from the WFS1 protein sequence. These Wfs1-ex5-KO232 rats show progressive glucose intolerance, which culminates in the development of diabetes mellitus, glycosuria, hyperglycaemia and severe body weight loss by 12 months of age. Beta cell mass is reduced in older mutant rats, which is accompanied by decreased glucose-stimulated insulin secretion from 3 months of age. Medullary volume is decreased in older Wfs1-ex5-KO232 rats, with the largest decreases at the level of the inferior olive. Finally, older Wfs1-ex5-KO232 rats show retinal gliosis and optic nerve atrophy at 15 months of age. Electron microscopy revealed axonal degeneration and disorganization of the myelin in the optic nerves of older Wfs1-ex5-KO232 rats. The phenotype of Wfs1-ex5-KO232 rats indicates that they have the core symptoms of WS. Therefore, we present a novel rat model of WS.
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spelling pubmed-55792612017-09-06 Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration Plaas, Mario Seppa, Kadri Reimets, Riin Jagomäe, Toomas Toots, Maarja Koppel, Tuuliki Vallisoo, Tuuli Nigul, Mait Heinla, Indrek Meier, Riho Kaasik, Allen Piirsoo, Andres Hickey, Miriam A. Terasmaa, Anton Vasar, Eero Sci Rep Article Wolfram syndrome (WS) is a rare autosomal-recessive disorder that is caused by mutations in the WFS1 gene and is characterized by juvenile-onset diabetes, optic atrophy, hearing loss and a number of other complications. Here, we describe the creation and phenotype of Wfs1 mutant rats, in which exon 5 of the Wfs1 gene is deleted, resulting in a loss of 27 amino acids from the WFS1 protein sequence. These Wfs1-ex5-KO232 rats show progressive glucose intolerance, which culminates in the development of diabetes mellitus, glycosuria, hyperglycaemia and severe body weight loss by 12 months of age. Beta cell mass is reduced in older mutant rats, which is accompanied by decreased glucose-stimulated insulin secretion from 3 months of age. Medullary volume is decreased in older Wfs1-ex5-KO232 rats, with the largest decreases at the level of the inferior olive. Finally, older Wfs1-ex5-KO232 rats show retinal gliosis and optic nerve atrophy at 15 months of age. Electron microscopy revealed axonal degeneration and disorganization of the myelin in the optic nerves of older Wfs1-ex5-KO232 rats. The phenotype of Wfs1-ex5-KO232 rats indicates that they have the core symptoms of WS. Therefore, we present a novel rat model of WS. Nature Publishing Group UK 2017-08-31 /pmc/articles/PMC5579261/ /pubmed/28860598 http://dx.doi.org/10.1038/s41598-017-09392-x Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Plaas, Mario
Seppa, Kadri
Reimets, Riin
Jagomäe, Toomas
Toots, Maarja
Koppel, Tuuliki
Vallisoo, Tuuli
Nigul, Mait
Heinla, Indrek
Meier, Riho
Kaasik, Allen
Piirsoo, Andres
Hickey, Miriam A.
Terasmaa, Anton
Vasar, Eero
Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
title Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
title_full Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
title_fullStr Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
title_full_unstemmed Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
title_short Wfs1- deficient rats develop primary symptoms of Wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
title_sort wfs1- deficient rats develop primary symptoms of wolfram syndrome: insulin-dependent diabetes, optic nerve atrophy and medullary degeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5579261/
https://www.ncbi.nlm.nih.gov/pubmed/28860598
http://dx.doi.org/10.1038/s41598-017-09392-x
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