Cargando…
Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death
A dietary regimen of caloric restriction delays aging in evolutionarily distant eukaryotes, including the budding yeast Saccharomyces cerevisiae. Here, we assessed how caloric restriction influences morphological, biochemical and cell biological properties of chronologically aging yeast advancing th...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5882325/ https://www.ncbi.nlm.nih.gov/pubmed/29662634 http://dx.doi.org/10.18632/oncotarget.24604 |
_version_ | 1783311443847806976 |
---|---|
author | Arlia-Ciommo, Anthony Leonov, Anna Beach, Adam Richard, Vincent R. Bourque, Simon D. Burstein, Michelle T. Kyryakov, Pavlo Gomez-Perez, Alejandra Koupaki, Olivia Feldman, Rachel Titorenko, Vladimir I. |
author_facet | Arlia-Ciommo, Anthony Leonov, Anna Beach, Adam Richard, Vincent R. Bourque, Simon D. Burstein, Michelle T. Kyryakov, Pavlo Gomez-Perez, Alejandra Koupaki, Olivia Feldman, Rachel Titorenko, Vladimir I. |
author_sort | Arlia-Ciommo, Anthony |
collection | PubMed |
description | A dietary regimen of caloric restriction delays aging in evolutionarily distant eukaryotes, including the budding yeast Saccharomyces cerevisiae. Here, we assessed how caloric restriction influences morphological, biochemical and cell biological properties of chronologically aging yeast advancing through different stages of the aging process. Our findings revealed that this low-calorie diet slows yeast chronological aging by mechanisms that coordinate the spatiotemporal dynamics of various cellular processes before entry into a non-proliferative state and after such entry. Caloric restriction causes a stepwise establishment of an aging-delaying cellular pattern by tuning a network that assimilates the following: 1) pathways of carbohydrate and lipid metabolism; 2) communications between the endoplasmic reticulum, lipid droplets, peroxisomes, mitochondria and the cytosol; and 3) a balance between the processes of mitochondrial fusion and fission. Through different phases of the aging process, the caloric restriction-dependent remodeling of this intricate network 1) postpones the age-related onsets of apoptotic and liponecrotic modes of regulated cell death; and 2) actively increases the chance of cell survival by supporting the maintenance of cellular proteostasis. Because caloric restriction decreases the risk of cell death and actively increases the chance of cell survival throughout chronological lifespan, this dietary intervention extends longevity of chronologically aging yeast. |
format | Online Article Text |
id | pubmed-5882325 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-58823252018-04-16 Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death Arlia-Ciommo, Anthony Leonov, Anna Beach, Adam Richard, Vincent R. Bourque, Simon D. Burstein, Michelle T. Kyryakov, Pavlo Gomez-Perez, Alejandra Koupaki, Olivia Feldman, Rachel Titorenko, Vladimir I. Oncotarget Research Paper A dietary regimen of caloric restriction delays aging in evolutionarily distant eukaryotes, including the budding yeast Saccharomyces cerevisiae. Here, we assessed how caloric restriction influences morphological, biochemical and cell biological properties of chronologically aging yeast advancing through different stages of the aging process. Our findings revealed that this low-calorie diet slows yeast chronological aging by mechanisms that coordinate the spatiotemporal dynamics of various cellular processes before entry into a non-proliferative state and after such entry. Caloric restriction causes a stepwise establishment of an aging-delaying cellular pattern by tuning a network that assimilates the following: 1) pathways of carbohydrate and lipid metabolism; 2) communications between the endoplasmic reticulum, lipid droplets, peroxisomes, mitochondria and the cytosol; and 3) a balance between the processes of mitochondrial fusion and fission. Through different phases of the aging process, the caloric restriction-dependent remodeling of this intricate network 1) postpones the age-related onsets of apoptotic and liponecrotic modes of regulated cell death; and 2) actively increases the chance of cell survival by supporting the maintenance of cellular proteostasis. Because caloric restriction decreases the risk of cell death and actively increases the chance of cell survival throughout chronological lifespan, this dietary intervention extends longevity of chronologically aging yeast. Impact Journals LLC 2018-03-05 /pmc/articles/PMC5882325/ /pubmed/29662634 http://dx.doi.org/10.18632/oncotarget.24604 Text en Copyright: © 2018 Arlia-Ciommo 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 3.0 (http://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 | Research Paper Arlia-Ciommo, Anthony Leonov, Anna Beach, Adam Richard, Vincent R. Bourque, Simon D. Burstein, Michelle T. Kyryakov, Pavlo Gomez-Perez, Alejandra Koupaki, Olivia Feldman, Rachel Titorenko, Vladimir I. Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
title | Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
title_full | Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
title_fullStr | Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
title_full_unstemmed | Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
title_short | Caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
title_sort | caloric restriction delays yeast chronological aging by remodeling carbohydrate and lipid metabolism, altering peroxisomal and mitochondrial functionalities, and postponing the onsets of apoptotic and liponecrotic modes of regulated cell death |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5882325/ https://www.ncbi.nlm.nih.gov/pubmed/29662634 http://dx.doi.org/10.18632/oncotarget.24604 |
work_keys_str_mv | AT arliaciommoanthony caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT leonovanna caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT beachadam caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT richardvincentr caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT bourquesimond caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT bursteinmichellet caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT kyryakovpavlo caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT gomezperezalejandra caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT koupakiolivia caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT feldmanrachel caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath AT titorenkovladimiri caloricrestrictiondelaysyeastchronologicalagingbyremodelingcarbohydrateandlipidmetabolismalteringperoxisomalandmitochondrialfunctionalitiesandpostponingtheonsetsofapoptoticandliponecroticmodesofregulatedcelldeath |