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Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment

BACKGROUND: Hunter syndrome (HS) is a lysosomal storage disease caused by iduronate-2-sulfatase (IDS) deficiency and loss of ability to break down and recycle the glycosaminoglycans, heparan and dermatan sulfate, leading to impairment of cellular processes and cell death. Cell activities and functio...

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Autores principales: Mazzoccoli, Gianluigi, Tomanin, Rosella, Mazza, Tommaso, D’Avanzo, Francesca, Salvalaio, Marika, Rigon, Laura, Zanetti, Alessandra, Pazienza, Valerio, Francavilla, Massimo, Giuliani, Francesco, Vinciguerra, Manlio, Scarpa, Maurizio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3851237/
https://www.ncbi.nlm.nih.gov/pubmed/24083598
http://dx.doi.org/10.1186/1755-8794-6-37
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author Mazzoccoli, Gianluigi
Tomanin, Rosella
Mazza, Tommaso
D’Avanzo, Francesca
Salvalaio, Marika
Rigon, Laura
Zanetti, Alessandra
Pazienza, Valerio
Francavilla, Massimo
Giuliani, Francesco
Vinciguerra, Manlio
Scarpa, Maurizio
author_facet Mazzoccoli, Gianluigi
Tomanin, Rosella
Mazza, Tommaso
D’Avanzo, Francesca
Salvalaio, Marika
Rigon, Laura
Zanetti, Alessandra
Pazienza, Valerio
Francavilla, Massimo
Giuliani, Francesco
Vinciguerra, Manlio
Scarpa, Maurizio
author_sort Mazzoccoli, Gianluigi
collection PubMed
description BACKGROUND: Hunter syndrome (HS) is a lysosomal storage disease caused by iduronate-2-sulfatase (IDS) deficiency and loss of ability to break down and recycle the glycosaminoglycans, heparan and dermatan sulfate, leading to impairment of cellular processes and cell death. Cell activities and functioning of intracellular organelles are controlled by the clock genes (CGs), driving the rhythmic expression of clock controlled genes (CCGs). We aimed to evaluate the expression of CGs and downstream CCGs in HS, before and after enzyme replacement treatment with IDS. METHODS: The expression levels of CGs and CCGs were evaluated by a whole transcriptome analysis through Next Generation Sequencing in normal primary human fibroblasts and fibroblasts of patients affected by HS before and 24 h/144 h after IDS treatment. The time related expression of CGs after synchronization by serum shock was also evaluated by qRT-PCR before and after 24 hours of IDS treatment. RESULTS: In HS fibroblasts we found altered expression of several CGs and CCGs, with dynamic changes 24 h and 144 h after IDS treatment. A semantic hypergraph-based analysis highlighted five gene clusters significantly associated to important biological processes or pathways, and five genes, AHR, HIF1A, CRY1, ITGA5 and EIF2B3, proven to be central players in these pathways. After synchronization by serum shock and 24 h treatment with IDS the expression of ARNTL2 at 10 h (p = 0.036), PER1 at 4 h (p = 0.019), PER2 at 10 h (p = 0.041) and 16 h (p = 0.043) changed in HS fibroblasts. CONCLUSION: CG and CCG expression is altered in HS fibroblasts and IDS treatment determines dynamic modifications, suggesting a direct involvement of the CG machinery in the physiopathology of cellular derangements that characterize HS.
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spelling pubmed-38512372013-12-13 Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment Mazzoccoli, Gianluigi Tomanin, Rosella Mazza, Tommaso D’Avanzo, Francesca Salvalaio, Marika Rigon, Laura Zanetti, Alessandra Pazienza, Valerio Francavilla, Massimo Giuliani, Francesco Vinciguerra, Manlio Scarpa, Maurizio BMC Med Genomics Research Article BACKGROUND: Hunter syndrome (HS) is a lysosomal storage disease caused by iduronate-2-sulfatase (IDS) deficiency and loss of ability to break down and recycle the glycosaminoglycans, heparan and dermatan sulfate, leading to impairment of cellular processes and cell death. Cell activities and functioning of intracellular organelles are controlled by the clock genes (CGs), driving the rhythmic expression of clock controlled genes (CCGs). We aimed to evaluate the expression of CGs and downstream CCGs in HS, before and after enzyme replacement treatment with IDS. METHODS: The expression levels of CGs and CCGs were evaluated by a whole transcriptome analysis through Next Generation Sequencing in normal primary human fibroblasts and fibroblasts of patients affected by HS before and 24 h/144 h after IDS treatment. The time related expression of CGs after synchronization by serum shock was also evaluated by qRT-PCR before and after 24 hours of IDS treatment. RESULTS: In HS fibroblasts we found altered expression of several CGs and CCGs, with dynamic changes 24 h and 144 h after IDS treatment. A semantic hypergraph-based analysis highlighted five gene clusters significantly associated to important biological processes or pathways, and five genes, AHR, HIF1A, CRY1, ITGA5 and EIF2B3, proven to be central players in these pathways. After synchronization by serum shock and 24 h treatment with IDS the expression of ARNTL2 at 10 h (p = 0.036), PER1 at 4 h (p = 0.019), PER2 at 10 h (p = 0.041) and 16 h (p = 0.043) changed in HS fibroblasts. CONCLUSION: CG and CCG expression is altered in HS fibroblasts and IDS treatment determines dynamic modifications, suggesting a direct involvement of the CG machinery in the physiopathology of cellular derangements that characterize HS. BioMed Central 2013-10-02 /pmc/articles/PMC3851237/ /pubmed/24083598 http://dx.doi.org/10.1186/1755-8794-6-37 Text en Copyright © 2013 Mazzoccoli et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Mazzoccoli, Gianluigi
Tomanin, Rosella
Mazza, Tommaso
D’Avanzo, Francesca
Salvalaio, Marika
Rigon, Laura
Zanetti, Alessandra
Pazienza, Valerio
Francavilla, Massimo
Giuliani, Francesco
Vinciguerra, Manlio
Scarpa, Maurizio
Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment
title Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment
title_full Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment
title_fullStr Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment
title_full_unstemmed Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment
title_short Circadian transcriptome analysis in human fibroblasts from Hunter syndrome and impact of iduronate-2-sulfatase treatment
title_sort circadian transcriptome analysis in human fibroblasts from hunter syndrome and impact of iduronate-2-sulfatase treatment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3851237/
https://www.ncbi.nlm.nih.gov/pubmed/24083598
http://dx.doi.org/10.1186/1755-8794-6-37
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