Cargando…

Dysregulated DNA methylation in the pathogenesis of Fabry disease

Fabry disease is an X-linked lysosomal storage disorder caused by a deficiency of α-galactosidase A and subsequent accumulation of glycosphingolipids with terminal α-D-galactosyl residues. The molecular process through which this abnormal metabolism of glycosphingolipids causes multisystem dysfuncti...

Descripción completa

Detalles Bibliográficos
Autores principales: Shen, Jin-Song, Balaji, Uthra, Shigeyasu, Kunitoshi, Okugawa, Yoshinaga, Jabbarzadeh-Tabrizi, Siamak, Day, Taniqua S., Arning, Erland, Marshall, John, Cheng, Seng H., Gu, Jinghua, Schiffmann, Raphael, Bottiglieri, Teodoro, Goel, Ajay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9519376/
https://www.ncbi.nlm.nih.gov/pubmed/36186841
http://dx.doi.org/10.1016/j.ymgmr.2022.100919
_version_ 1784799383996334080
author Shen, Jin-Song
Balaji, Uthra
Shigeyasu, Kunitoshi
Okugawa, Yoshinaga
Jabbarzadeh-Tabrizi, Siamak
Day, Taniqua S.
Arning, Erland
Marshall, John
Cheng, Seng H.
Gu, Jinghua
Schiffmann, Raphael
Bottiglieri, Teodoro
Goel, Ajay
author_facet Shen, Jin-Song
Balaji, Uthra
Shigeyasu, Kunitoshi
Okugawa, Yoshinaga
Jabbarzadeh-Tabrizi, Siamak
Day, Taniqua S.
Arning, Erland
Marshall, John
Cheng, Seng H.
Gu, Jinghua
Schiffmann, Raphael
Bottiglieri, Teodoro
Goel, Ajay
author_sort Shen, Jin-Song
collection PubMed
description Fabry disease is an X-linked lysosomal storage disorder caused by a deficiency of α-galactosidase A and subsequent accumulation of glycosphingolipids with terminal α-D-galactosyl residues. The molecular process through which this abnormal metabolism of glycosphingolipids causes multisystem dysfunction in Fabry disease is not fully understood. We sought to determine whether dysregulated DNA methylation plays a role in the development of this disease. In the present study, using isogenic cellular models derived from Fabry patient endothelial cells, we tested whether manipulation of α-galactosidase A activity and glycosphingolipid metabolism affects DNA methylation. Bisulfite pyrosequencing revealed that changes in α-galactosidase A activity were associated with significantly altered DNA methylation in the androgen receptor promoter, and this effect was highly CpG loci-specific. Methylation array studies showed that α-galactosidase A activity and glycosphingolipid levels were associated with differential methylation of numerous CpG sites throughout the genome. We identified 15 signaling pathways that may be susceptible to methylation alterations in Fabry disease. By incorporating RNA sequencing data, we identified 21 genes that have both differential mRNA expression and methylation. Upregulated expression of collagen type IV alpha 1 and alpha 2 genes correlated with decreased methylation of these two genes. Methionine levels were elevated in Fabry patient cells and Fabry mouse tissues, suggesting that a perturbed methionine cycle contributes to the observed dysregulated methylation patterns. In conclusion, this study provides evidence that α-galactosidase A deficiency and glycosphingolipid storage may affect DNA methylation homeostasis and highlights the importance of epigenetics in the pathogenesis of Fabry disease and, possibly, of other lysosomal storage disorders.
format Online
Article
Text
id pubmed-9519376
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-95193762022-09-29 Dysregulated DNA methylation in the pathogenesis of Fabry disease Shen, Jin-Song Balaji, Uthra Shigeyasu, Kunitoshi Okugawa, Yoshinaga Jabbarzadeh-Tabrizi, Siamak Day, Taniqua S. Arning, Erland Marshall, John Cheng, Seng H. Gu, Jinghua Schiffmann, Raphael Bottiglieri, Teodoro Goel, Ajay Mol Genet Metab Rep Research Paper Fabry disease is an X-linked lysosomal storage disorder caused by a deficiency of α-galactosidase A and subsequent accumulation of glycosphingolipids with terminal α-D-galactosyl residues. The molecular process through which this abnormal metabolism of glycosphingolipids causes multisystem dysfunction in Fabry disease is not fully understood. We sought to determine whether dysregulated DNA methylation plays a role in the development of this disease. In the present study, using isogenic cellular models derived from Fabry patient endothelial cells, we tested whether manipulation of α-galactosidase A activity and glycosphingolipid metabolism affects DNA methylation. Bisulfite pyrosequencing revealed that changes in α-galactosidase A activity were associated with significantly altered DNA methylation in the androgen receptor promoter, and this effect was highly CpG loci-specific. Methylation array studies showed that α-galactosidase A activity and glycosphingolipid levels were associated with differential methylation of numerous CpG sites throughout the genome. We identified 15 signaling pathways that may be susceptible to methylation alterations in Fabry disease. By incorporating RNA sequencing data, we identified 21 genes that have both differential mRNA expression and methylation. Upregulated expression of collagen type IV alpha 1 and alpha 2 genes correlated with decreased methylation of these two genes. Methionine levels were elevated in Fabry patient cells and Fabry mouse tissues, suggesting that a perturbed methionine cycle contributes to the observed dysregulated methylation patterns. In conclusion, this study provides evidence that α-galactosidase A deficiency and glycosphingolipid storage may affect DNA methylation homeostasis and highlights the importance of epigenetics in the pathogenesis of Fabry disease and, possibly, of other lysosomal storage disorders. Elsevier 2022-09-26 /pmc/articles/PMC9519376/ /pubmed/36186841 http://dx.doi.org/10.1016/j.ymgmr.2022.100919 Text en © 2022 Published by Elsevier Inc. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Shen, Jin-Song
Balaji, Uthra
Shigeyasu, Kunitoshi
Okugawa, Yoshinaga
Jabbarzadeh-Tabrizi, Siamak
Day, Taniqua S.
Arning, Erland
Marshall, John
Cheng, Seng H.
Gu, Jinghua
Schiffmann, Raphael
Bottiglieri, Teodoro
Goel, Ajay
Dysregulated DNA methylation in the pathogenesis of Fabry disease
title Dysregulated DNA methylation in the pathogenesis of Fabry disease
title_full Dysregulated DNA methylation in the pathogenesis of Fabry disease
title_fullStr Dysregulated DNA methylation in the pathogenesis of Fabry disease
title_full_unstemmed Dysregulated DNA methylation in the pathogenesis of Fabry disease
title_short Dysregulated DNA methylation in the pathogenesis of Fabry disease
title_sort dysregulated dna methylation in the pathogenesis of fabry disease
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9519376/
https://www.ncbi.nlm.nih.gov/pubmed/36186841
http://dx.doi.org/10.1016/j.ymgmr.2022.100919
work_keys_str_mv AT shenjinsong dysregulateddnamethylationinthepathogenesisoffabrydisease
AT balajiuthra dysregulateddnamethylationinthepathogenesisoffabrydisease
AT shigeyasukunitoshi dysregulateddnamethylationinthepathogenesisoffabrydisease
AT okugawayoshinaga dysregulateddnamethylationinthepathogenesisoffabrydisease
AT jabbarzadehtabrizisiamak dysregulateddnamethylationinthepathogenesisoffabrydisease
AT daytaniquas dysregulateddnamethylationinthepathogenesisoffabrydisease
AT arningerland dysregulateddnamethylationinthepathogenesisoffabrydisease
AT marshalljohn dysregulateddnamethylationinthepathogenesisoffabrydisease
AT chengsengh dysregulateddnamethylationinthepathogenesisoffabrydisease
AT gujinghua dysregulateddnamethylationinthepathogenesisoffabrydisease
AT schiffmannraphael dysregulateddnamethylationinthepathogenesisoffabrydisease
AT bottiglieriteodoro dysregulateddnamethylationinthepathogenesisoffabrydisease
AT goelajay dysregulateddnamethylationinthepathogenesisoffabrydisease