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Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC

Mucopolysaccharidosis type IIIC (MPSIIIC) is a severe lysosomal storage disease caused by deficiency in activity of the transmembrane enzyme heparan-α-glucosaminide N-acetyltransferase (HGSNAT) that catalyses the N-acetylation of α-glucosamine residues of heparan sulfate. Enzyme deficiency causes ab...

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Autores principales: Marcó, Sara, Pujol, Anna, Roca, Carles, Motas, Sandra, Ribera, Albert, Garcia, Miguel, Molas, Maria, Villacampa, Pilar, Melia, Cristian S., Sánchez, Víctor, Sánchez, Xavier, Bertolin, Joan, Ruberte, Jesús, Haurigot, Virginia, Bosch, Fatima
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/PMC5047683/
https://www.ncbi.nlm.nih.gov/pubmed/27491071
http://dx.doi.org/10.1242/dmm.025171
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author Marcó, Sara
Pujol, Anna
Roca, Carles
Motas, Sandra
Ribera, Albert
Garcia, Miguel
Molas, Maria
Villacampa, Pilar
Melia, Cristian S.
Sánchez, Víctor
Sánchez, Xavier
Bertolin, Joan
Ruberte, Jesús
Haurigot, Virginia
Bosch, Fatima
author_facet Marcó, Sara
Pujol, Anna
Roca, Carles
Motas, Sandra
Ribera, Albert
Garcia, Miguel
Molas, Maria
Villacampa, Pilar
Melia, Cristian S.
Sánchez, Víctor
Sánchez, Xavier
Bertolin, Joan
Ruberte, Jesús
Haurigot, Virginia
Bosch, Fatima
author_sort Marcó, Sara
collection PubMed
description Mucopolysaccharidosis type IIIC (MPSIIIC) is a severe lysosomal storage disease caused by deficiency in activity of the transmembrane enzyme heparan-α-glucosaminide N-acetyltransferase (HGSNAT) that catalyses the N-acetylation of α-glucosamine residues of heparan sulfate. Enzyme deficiency causes abnormal substrate accumulation in lysosomes, leading to progressive and severe neurodegeneration, somatic pathology and early death. There is no cure for MPSIIIC, and development of new therapies is challenging because of the unfeasibility of cross-correction. In this study, we generated a new mouse model of MPSIIIC by targeted disruption of the Hgsnat gene. Successful targeting left LacZ expression under control of the Hgsnat promoter, allowing investigation into sites of endogenous expression, which was particularly prominent in the CNS, but was also detectable in peripheral organs. Signs of CNS storage pathology, including glycosaminoglycan accumulation, lysosomal distension, lysosomal dysfunction and neuroinflammation were detected in 2-month-old animals and progressed with age. Glycosaminoglycan accumulation and ultrastructural changes were also observed in most somatic organs, but lysosomal pathology seemed most severe in liver. Furthermore, HGSNAT-deficient mice had altered locomotor and exploratory activity and shortened lifespan. Hence, this animal model recapitulates human MPSIIIC and provides a useful tool for the study of disease physiopathology and the development of new therapeutic approaches.
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spelling pubmed-50476832016-10-03 Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC Marcó, Sara Pujol, Anna Roca, Carles Motas, Sandra Ribera, Albert Garcia, Miguel Molas, Maria Villacampa, Pilar Melia, Cristian S. Sánchez, Víctor Sánchez, Xavier Bertolin, Joan Ruberte, Jesús Haurigot, Virginia Bosch, Fatima Dis Model Mech Research Article Mucopolysaccharidosis type IIIC (MPSIIIC) is a severe lysosomal storage disease caused by deficiency in activity of the transmembrane enzyme heparan-α-glucosaminide N-acetyltransferase (HGSNAT) that catalyses the N-acetylation of α-glucosamine residues of heparan sulfate. Enzyme deficiency causes abnormal substrate accumulation in lysosomes, leading to progressive and severe neurodegeneration, somatic pathology and early death. There is no cure for MPSIIIC, and development of new therapies is challenging because of the unfeasibility of cross-correction. In this study, we generated a new mouse model of MPSIIIC by targeted disruption of the Hgsnat gene. Successful targeting left LacZ expression under control of the Hgsnat promoter, allowing investigation into sites of endogenous expression, which was particularly prominent in the CNS, but was also detectable in peripheral organs. Signs of CNS storage pathology, including glycosaminoglycan accumulation, lysosomal distension, lysosomal dysfunction and neuroinflammation were detected in 2-month-old animals and progressed with age. Glycosaminoglycan accumulation and ultrastructural changes were also observed in most somatic organs, but lysosomal pathology seemed most severe in liver. Furthermore, HGSNAT-deficient mice had altered locomotor and exploratory activity and shortened lifespan. Hence, this animal model recapitulates human MPSIIIC and provides a useful tool for the study of disease physiopathology and the development of new therapeutic approaches. The Company of Biologists Ltd 2016-09-01 /pmc/articles/PMC5047683/ /pubmed/27491071 http://dx.doi.org/10.1242/dmm.025171 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
Marcó, Sara
Pujol, Anna
Roca, Carles
Motas, Sandra
Ribera, Albert
Garcia, Miguel
Molas, Maria
Villacampa, Pilar
Melia, Cristian S.
Sánchez, Víctor
Sánchez, Xavier
Bertolin, Joan
Ruberte, Jesús
Haurigot, Virginia
Bosch, Fatima
Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC
title Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC
title_full Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC
title_fullStr Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC
title_full_unstemmed Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC
title_short Progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type IIIC
title_sort progressive neurologic and somatic disease in a novel mouse model of human mucopolysaccharidosis type iiic
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5047683/
https://www.ncbi.nlm.nih.gov/pubmed/27491071
http://dx.doi.org/10.1242/dmm.025171
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