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Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome

Peroxisomes are small, membrane-enclosed eukaryotic organelles that house various enzymes with metabolic functions. One important feature in both Hutchinson-Gilford Progeria Syndrome (HGPS) and normal aging is the elevated levels of Reactive Oxygen Species (ROS), which are generated from metabolic p...

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Detalles Bibliográficos
Autores principales: Mao, Xiaojing, Bharti, Pratima, Thaivalappil, Abhirami, Cao, Kan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7138560/
https://www.ncbi.nlm.nih.gov/pubmed/32186522
http://dx.doi.org/10.18632/aging.102941
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author Mao, Xiaojing
Bharti, Pratima
Thaivalappil, Abhirami
Cao, Kan
author_facet Mao, Xiaojing
Bharti, Pratima
Thaivalappil, Abhirami
Cao, Kan
author_sort Mao, Xiaojing
collection PubMed
description Peroxisomes are small, membrane-enclosed eukaryotic organelles that house various enzymes with metabolic functions. One important feature in both Hutchinson-Gilford Progeria Syndrome (HGPS) and normal aging is the elevated levels of Reactive Oxygen Species (ROS), which are generated from metabolic pathways with the capacity to cause oxidative damage to macromolecules within the cells. Although peroxisomal bioreactions can generate free radicals as their byproducts, many metabolic enzymes within the peroxisomes play critical roles as ROS scavengers, in particular, catalase. Here, we observed impaired peroxisomes-targeting protein trafficking, which suggested that the poorly assembled peroxisomes might cause high oxidative stress, contributing to the premature senescent phenotype in HGPS. We then investigated the ROS clearance efficiency by peroxisomal enzymes and found a significantly decreased expression of catalase in HGPS. Furthermore, we evaluated the effects of two promising HGPS-treatment drugs Methylene Blue and RAD001 (Everolimus, a rapamycin analog) on catalase in HGPS fibroblasts. We found that both drugs effectively reduced cellular ROS levels. MB, as a well-known antioxidant, did not affect catalase expression or activity. Interestingly, RAD001 treatment significantly upregulated catalase activity in HGPS cells. Our study presents the first characterization of peroxisomal function in HGPS and provides new insights into the cellular aspects of HGPS and the ongoing clinical trial.
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spelling pubmed-71385602020-04-13 Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome Mao, Xiaojing Bharti, Pratima Thaivalappil, Abhirami Cao, Kan Aging (Albany NY) Research Paper Peroxisomes are small, membrane-enclosed eukaryotic organelles that house various enzymes with metabolic functions. One important feature in both Hutchinson-Gilford Progeria Syndrome (HGPS) and normal aging is the elevated levels of Reactive Oxygen Species (ROS), which are generated from metabolic pathways with the capacity to cause oxidative damage to macromolecules within the cells. Although peroxisomal bioreactions can generate free radicals as their byproducts, many metabolic enzymes within the peroxisomes play critical roles as ROS scavengers, in particular, catalase. Here, we observed impaired peroxisomes-targeting protein trafficking, which suggested that the poorly assembled peroxisomes might cause high oxidative stress, contributing to the premature senescent phenotype in HGPS. We then investigated the ROS clearance efficiency by peroxisomal enzymes and found a significantly decreased expression of catalase in HGPS. Furthermore, we evaluated the effects of two promising HGPS-treatment drugs Methylene Blue and RAD001 (Everolimus, a rapamycin analog) on catalase in HGPS fibroblasts. We found that both drugs effectively reduced cellular ROS levels. MB, as a well-known antioxidant, did not affect catalase expression or activity. Interestingly, RAD001 treatment significantly upregulated catalase activity in HGPS cells. Our study presents the first characterization of peroxisomal function in HGPS and provides new insights into the cellular aspects of HGPS and the ongoing clinical trial. Impact Journals 2020-03-18 /pmc/articles/PMC7138560/ /pubmed/32186522 http://dx.doi.org/10.18632/aging.102941 Text en Copyright © 2020 Mao et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Mao, Xiaojing
Bharti, Pratima
Thaivalappil, Abhirami
Cao, Kan
Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome
title Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome
title_full Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome
title_fullStr Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome
title_full_unstemmed Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome
title_short Peroxisomal abnormalities and catalase deficiency in Hutchinson-Gilford Progeria Syndrome
title_sort peroxisomal abnormalities and catalase deficiency in hutchinson-gilford progeria syndrome
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7138560/
https://www.ncbi.nlm.nih.gov/pubmed/32186522
http://dx.doi.org/10.18632/aging.102941
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