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Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay

Mucopolysaccharidosis type II (MPS II), also known as Hunter syndrome, is a rare X-linked recessive disease caused by a deficiency of the lysosomal enzyme iduronate-2-sulfatase (IDS), which activates intracellular accumulation of nonmetabolized glycosaminoglycans such as heparan sulfate and dermatan...

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Autores principales: Benincore-Flórez, Eliana, El-Azaz, Jorge, Solarte, Gabriela Alejandra, Rodríguez, Alexander, Reyes, Luis H., Alméciga-Díaz, Carlos Javier, Cardona-Ramírez, Carolina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913312/
https://www.ncbi.nlm.nih.gov/pubmed/35284671
http://dx.doi.org/10.1016/j.heliyon.2022.e09031
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author Benincore-Flórez, Eliana
El-Azaz, Jorge
Solarte, Gabriela Alejandra
Rodríguez, Alexander
Reyes, Luis H.
Alméciga-Díaz, Carlos Javier
Cardona-Ramírez, Carolina
author_facet Benincore-Flórez, Eliana
El-Azaz, Jorge
Solarte, Gabriela Alejandra
Rodríguez, Alexander
Reyes, Luis H.
Alméciga-Díaz, Carlos Javier
Cardona-Ramírez, Carolina
author_sort Benincore-Flórez, Eliana
collection PubMed
description Mucopolysaccharidosis type II (MPS II), also known as Hunter syndrome, is a rare X-linked recessive disease caused by a deficiency of the lysosomal enzyme iduronate-2-sulfatase (IDS), which activates intracellular accumulation of nonmetabolized glycosaminoglycans such as heparan sulfate and dermatan sulfate. This accumulation causes severe damage to several tissues, principally the central nervous system. Previously, we identified 187 IDS-protein interactions in the mouse brain. To validate a subset of these interactions, we selected and cloned the coding regions of 10 candidate genes to perform a targeted yeast two-hybrid assay. The results allowed the identification of the physical interaction of IDS with LSAMP and SYT1. Although the physiological relevance of these complexes is unknown, recent advances allow us to point out that these interactions could be involved in vesicular trafficking of IDS through the interaction with SYT1, as well as to the ability to form a transcytosis module between the cellular components of the blood-brain-barrier (BBB) through its interaction with LSAMP. These results may shed light on the role of IDS on cellular homeostasis and may also contribute to the understanding of MPS II physiopathology and the development of novel therapeutic strategies to transport recombinant IDS through the brain endothelial cells toward the brain parenchyma.
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spelling pubmed-89133122022-03-12 Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay Benincore-Flórez, Eliana El-Azaz, Jorge Solarte, Gabriela Alejandra Rodríguez, Alexander Reyes, Luis H. Alméciga-Díaz, Carlos Javier Cardona-Ramírez, Carolina Heliyon Research Article Mucopolysaccharidosis type II (MPS II), also known as Hunter syndrome, is a rare X-linked recessive disease caused by a deficiency of the lysosomal enzyme iduronate-2-sulfatase (IDS), which activates intracellular accumulation of nonmetabolized glycosaminoglycans such as heparan sulfate and dermatan sulfate. This accumulation causes severe damage to several tissues, principally the central nervous system. Previously, we identified 187 IDS-protein interactions in the mouse brain. To validate a subset of these interactions, we selected and cloned the coding regions of 10 candidate genes to perform a targeted yeast two-hybrid assay. The results allowed the identification of the physical interaction of IDS with LSAMP and SYT1. Although the physiological relevance of these complexes is unknown, recent advances allow us to point out that these interactions could be involved in vesicular trafficking of IDS through the interaction with SYT1, as well as to the ability to form a transcytosis module between the cellular components of the blood-brain-barrier (BBB) through its interaction with LSAMP. These results may shed light on the role of IDS on cellular homeostasis and may also contribute to the understanding of MPS II physiopathology and the development of novel therapeutic strategies to transport recombinant IDS through the brain endothelial cells toward the brain parenchyma. Elsevier 2022-03-01 /pmc/articles/PMC8913312/ /pubmed/35284671 http://dx.doi.org/10.1016/j.heliyon.2022.e09031 Text en © 2022 Published by Elsevier Ltd. 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 Article
Benincore-Flórez, Eliana
El-Azaz, Jorge
Solarte, Gabriela Alejandra
Rodríguez, Alexander
Reyes, Luis H.
Alméciga-Díaz, Carlos Javier
Cardona-Ramírez, Carolina
Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
title Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
title_full Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
title_fullStr Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
title_full_unstemmed Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
title_short Iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
title_sort iduronate-2-sulfatase interactome: validation by yeast two-hybrid assay
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8913312/
https://www.ncbi.nlm.nih.gov/pubmed/35284671
http://dx.doi.org/10.1016/j.heliyon.2022.e09031
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