Cargando…

Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease

Gaucher disease results from GBA1 mutations that lead to defective acid β-glucosidase (GCase) mediated cleavage of glucosylceramide (GC) and glucosylsphingosine as well as heterogeneous manifestations in the viscera and CNS. The mutation, tissue, and age-dependent accumulations of different GC speci...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Ying, Zhang, Wujuan, Xu, You-Hai, Quinn, Brian, Dasgupta, Nupur, Liou, Benjamin, Setchell, Kenneth D. R., Grabowski, Gregory A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3592923/
https://www.ncbi.nlm.nih.gov/pubmed/23520473
http://dx.doi.org/10.1371/journal.pone.0057560
_version_ 1782262209610514432
author Sun, Ying
Zhang, Wujuan
Xu, You-Hai
Quinn, Brian
Dasgupta, Nupur
Liou, Benjamin
Setchell, Kenneth D. R.
Grabowski, Gregory A.
author_facet Sun, Ying
Zhang, Wujuan
Xu, You-Hai
Quinn, Brian
Dasgupta, Nupur
Liou, Benjamin
Setchell, Kenneth D. R.
Grabowski, Gregory A.
author_sort Sun, Ying
collection PubMed
description Gaucher disease results from GBA1 mutations that lead to defective acid β-glucosidase (GCase) mediated cleavage of glucosylceramide (GC) and glucosylsphingosine as well as heterogeneous manifestations in the viscera and CNS. The mutation, tissue, and age-dependent accumulations of different GC species were characterized in mice with Gba1 missense mutations alone or in combination with isolated saposin C deficiency (C*). Gba1 heteroallelism for D409V and null alleles (9V/null) led to GC excesses primarily in the visceral tissues with preferential accumulations of lung GC24∶0, but not in liver, spleen, or brain. Age-dependent increases of different GC species were observed. The combined saposin C deficiency (C*) with V394L homozygosity (4L;C*) showed major GC18∶0 degradation defects in the brain, whereas the analogous mice with D409H homozygosity and C* (9H;C*) led to all GC species accumulating in visceral tissues. Glucosylsphingosine was poorly degraded in brain by V394L and D409H GCases and in visceral tissues by D409V GCase. The neonatal lethal N370S/N370S genotype had insignificant substrate accumulations in any tissue. These results demonstrate age, organ, and mutation-specific quantitative differences in GC species and glucosylsphingosine accumulations that can have influence in the tissue/regional expression of Gaucher disease phenotypes.
format Online
Article
Text
id pubmed-3592923
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35929232013-03-21 Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease Sun, Ying Zhang, Wujuan Xu, You-Hai Quinn, Brian Dasgupta, Nupur Liou, Benjamin Setchell, Kenneth D. R. Grabowski, Gregory A. PLoS One Research Article Gaucher disease results from GBA1 mutations that lead to defective acid β-glucosidase (GCase) mediated cleavage of glucosylceramide (GC) and glucosylsphingosine as well as heterogeneous manifestations in the viscera and CNS. The mutation, tissue, and age-dependent accumulations of different GC species were characterized in mice with Gba1 missense mutations alone or in combination with isolated saposin C deficiency (C*). Gba1 heteroallelism for D409V and null alleles (9V/null) led to GC excesses primarily in the visceral tissues with preferential accumulations of lung GC24∶0, but not in liver, spleen, or brain. Age-dependent increases of different GC species were observed. The combined saposin C deficiency (C*) with V394L homozygosity (4L;C*) showed major GC18∶0 degradation defects in the brain, whereas the analogous mice with D409H homozygosity and C* (9H;C*) led to all GC species accumulating in visceral tissues. Glucosylsphingosine was poorly degraded in brain by V394L and D409H GCases and in visceral tissues by D409V GCase. The neonatal lethal N370S/N370S genotype had insignificant substrate accumulations in any tissue. These results demonstrate age, organ, and mutation-specific quantitative differences in GC species and glucosylsphingosine accumulations that can have influence in the tissue/regional expression of Gaucher disease phenotypes. Public Library of Science 2013-03-08 /pmc/articles/PMC3592923/ /pubmed/23520473 http://dx.doi.org/10.1371/journal.pone.0057560 Text en © 2013 Sun 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
Sun, Ying
Zhang, Wujuan
Xu, You-Hai
Quinn, Brian
Dasgupta, Nupur
Liou, Benjamin
Setchell, Kenneth D. R.
Grabowski, Gregory A.
Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease
title Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease
title_full Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease
title_fullStr Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease
title_full_unstemmed Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease
title_short Substrate Compositional Variation with Tissue/Region and Gba1 Mutations in Mouse Models–Implications for Gaucher Disease
title_sort substrate compositional variation with tissue/region and gba1 mutations in mouse models–implications for gaucher disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3592923/
https://www.ncbi.nlm.nih.gov/pubmed/23520473
http://dx.doi.org/10.1371/journal.pone.0057560
work_keys_str_mv AT sunying substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT zhangwujuan substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT xuyouhai substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT quinnbrian substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT dasguptanupur substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT lioubenjamin substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT setchellkennethdr substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease
AT grabowskigregorya substratecompositionalvariationwithtissueregionandgba1mutationsinmousemodelsimplicationsforgaucherdisease