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Acid ceramidase promotes senescent cell survival

Cellular senescence is linked to chronic age-related diseases including atherosclerosis, diabetes, and neurodegeneration. Compared to proliferating cells, senescent cells express distinct subsets of proteins. In this study, we used cultured human diploid fibroblasts rendered senescent through replic...

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Autores principales: Munk, Rachel, Anerillas, Carlos, Rossi, Martina, Tsitsipatis, Dimitrios, Martindale, Jennifer L., Herman, Allison B., Yang, Jen-Hao, Roberts, Jackson A., Varma, Vijay R., Pandey, Poonam R., Thambisetty, Madhav, Gorospe, Myriam, Abdelmohsen, Kotb
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8266329/
https://www.ncbi.nlm.nih.gov/pubmed/34102611
http://dx.doi.org/10.18632/aging.203170
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author Munk, Rachel
Anerillas, Carlos
Rossi, Martina
Tsitsipatis, Dimitrios
Martindale, Jennifer L.
Herman, Allison B.
Yang, Jen-Hao
Roberts, Jackson A.
Varma, Vijay R.
Pandey, Poonam R.
Thambisetty, Madhav
Gorospe, Myriam
Abdelmohsen, Kotb
author_facet Munk, Rachel
Anerillas, Carlos
Rossi, Martina
Tsitsipatis, Dimitrios
Martindale, Jennifer L.
Herman, Allison B.
Yang, Jen-Hao
Roberts, Jackson A.
Varma, Vijay R.
Pandey, Poonam R.
Thambisetty, Madhav
Gorospe, Myriam
Abdelmohsen, Kotb
author_sort Munk, Rachel
collection PubMed
description Cellular senescence is linked to chronic age-related diseases including atherosclerosis, diabetes, and neurodegeneration. Compared to proliferating cells, senescent cells express distinct subsets of proteins. In this study, we used cultured human diploid fibroblasts rendered senescent through replicative exhaustion or ionizing radiation to identify proteins differentially expressed during senescence. We identified acid ceramidase (ASAH1), a lysosomal enzyme that cleaves ceramide into sphingosine and fatty acid, as being highly elevated in senescent cells. This increase in ASAH1 levels in senescent cells was associated with a rise in the levels of ASAH1 mRNA and a robust increase in ASAH1 protein stability. Furthermore, silencing ASAH1 in pre-senescent fibroblasts decreased the levels of senescence proteins p16, p21, and p53, and reduced the activity of the senescence-associated β-galactosidase. Interestingly, depletion of ASAH1 in pre-senescent cells sensitized these cells to the senolytics Dasatinib and Quercetin (D+Q). Together, our study indicates that ASAH1 promotes senescence, protects senescent cells, and confers resistance against senolytic drugs. Given that inhibiting ASAH1 sensitizes cells towards senolysis, this enzyme represents an attractive therapeutic target in interventions aimed at eliminating senescent cells.
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spelling pubmed-82663292021-07-09 Acid ceramidase promotes senescent cell survival Munk, Rachel Anerillas, Carlos Rossi, Martina Tsitsipatis, Dimitrios Martindale, Jennifer L. Herman, Allison B. Yang, Jen-Hao Roberts, Jackson A. Varma, Vijay R. Pandey, Poonam R. Thambisetty, Madhav Gorospe, Myriam Abdelmohsen, Kotb Aging (Albany NY) Priority Research Paper Cellular senescence is linked to chronic age-related diseases including atherosclerosis, diabetes, and neurodegeneration. Compared to proliferating cells, senescent cells express distinct subsets of proteins. In this study, we used cultured human diploid fibroblasts rendered senescent through replicative exhaustion or ionizing radiation to identify proteins differentially expressed during senescence. We identified acid ceramidase (ASAH1), a lysosomal enzyme that cleaves ceramide into sphingosine and fatty acid, as being highly elevated in senescent cells. This increase in ASAH1 levels in senescent cells was associated with a rise in the levels of ASAH1 mRNA and a robust increase in ASAH1 protein stability. Furthermore, silencing ASAH1 in pre-senescent fibroblasts decreased the levels of senescence proteins p16, p21, and p53, and reduced the activity of the senescence-associated β-galactosidase. Interestingly, depletion of ASAH1 in pre-senescent cells sensitized these cells to the senolytics Dasatinib and Quercetin (D+Q). Together, our study indicates that ASAH1 promotes senescence, protects senescent cells, and confers resistance against senolytic drugs. Given that inhibiting ASAH1 sensitizes cells towards senolysis, this enzyme represents an attractive therapeutic target in interventions aimed at eliminating senescent cells. Impact Journals 2021-06-08 /pmc/articles/PMC8266329/ /pubmed/34102611 http://dx.doi.org/10.18632/aging.203170 Text en Copyright: © 2021 Munk et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Priority Research Paper
Munk, Rachel
Anerillas, Carlos
Rossi, Martina
Tsitsipatis, Dimitrios
Martindale, Jennifer L.
Herman, Allison B.
Yang, Jen-Hao
Roberts, Jackson A.
Varma, Vijay R.
Pandey, Poonam R.
Thambisetty, Madhav
Gorospe, Myriam
Abdelmohsen, Kotb
Acid ceramidase promotes senescent cell survival
title Acid ceramidase promotes senescent cell survival
title_full Acid ceramidase promotes senescent cell survival
title_fullStr Acid ceramidase promotes senescent cell survival
title_full_unstemmed Acid ceramidase promotes senescent cell survival
title_short Acid ceramidase promotes senescent cell survival
title_sort acid ceramidase promotes senescent cell survival
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8266329/
https://www.ncbi.nlm.nih.gov/pubmed/34102611
http://dx.doi.org/10.18632/aging.203170
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