Cargando…

Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast

We have recently found that PE21, an extract from the white willow Salix alba, slows chronological aging and prolongs longevity of the yeast Saccharomyces cerevisiae more efficiently than any of the previously known pharmacological interventions. Here, we investigated mechanisms through which PE21 d...

Descripción completa

Detalles Bibliográficos
Autores principales: Medkour, Younes, Mohammad, Karamat, Arlia-Ciommo, Anthony, Svistkova, Veronika, Dakik, Pamela, Mitrofanova, Darya, Rodriguez, Monica Enith Lozano, Junio, Jennifer Anne Baratang, Taifour, Tarek, Escudero, Paola, Goltsios, Fani-Fay, Soodbakhsh, Sahar, Maalaoui, Hana, Simard, Éric, Titorenko, Vladimir I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6791382/
https://www.ncbi.nlm.nih.gov/pubmed/31645900
http://dx.doi.org/10.18632/oncotarget.27209
_version_ 1783458970073038848
author Medkour, Younes
Mohammad, Karamat
Arlia-Ciommo, Anthony
Svistkova, Veronika
Dakik, Pamela
Mitrofanova, Darya
Rodriguez, Monica Enith Lozano
Junio, Jennifer Anne Baratang
Taifour, Tarek
Escudero, Paola
Goltsios, Fani-Fay
Soodbakhsh, Sahar
Maalaoui, Hana
Simard, Éric
Titorenko, Vladimir I.
author_facet Medkour, Younes
Mohammad, Karamat
Arlia-Ciommo, Anthony
Svistkova, Veronika
Dakik, Pamela
Mitrofanova, Darya
Rodriguez, Monica Enith Lozano
Junio, Jennifer Anne Baratang
Taifour, Tarek
Escudero, Paola
Goltsios, Fani-Fay
Soodbakhsh, Sahar
Maalaoui, Hana
Simard, Éric
Titorenko, Vladimir I.
author_sort Medkour, Younes
collection PubMed
description We have recently found that PE21, an extract from the white willow Salix alba, slows chronological aging and prolongs longevity of the yeast Saccharomyces cerevisiae more efficiently than any of the previously known pharmacological interventions. Here, we investigated mechanisms through which PE21 delays yeast chronological aging and extends yeast longevity. We show that PE21 causes a remodeling of lipid metabolism in chronologically aging yeast, thereby instigating changes in the concentrations of several lipid classes. We demonstrate that such changes in the cellular lipidome initiate three mechanisms of aging delay and longevity extension. The first mechanism through which PE21 slows aging and prolongs longevity consists in its ability to decrease the intracellular concentration of free fatty acids. This postpones an age-related onset of liponecrotic cell death promoted by excessive concentrations of free fatty acids. The second mechanism of aging delay and longevity extension by PE21 consists in its ability to decrease the concentrations of triacylglycerols and to increase the concentrations of glycerophospholipids within the endoplasmic reticulum membrane. This activates the unfolded protein response system in the endoplasmic reticulum, which then decelerates an age-related decline in protein and lipid homeostasis and slows down an aging-associated deterioration of cell resistance to stress. The third mechanisms underlying aging delay and longevity extension by PE21 consists in its ability to change lipid concentrations in the mitochondrial membranes. This alters certain catabolic and anabolic processes in mitochondria, thus amending the pattern of aging-associated changes in several key aspects of mitochondrial functionality.
format Online
Article
Text
id pubmed-6791382
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-67913822019-10-23 Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast Medkour, Younes Mohammad, Karamat Arlia-Ciommo, Anthony Svistkova, Veronika Dakik, Pamela Mitrofanova, Darya Rodriguez, Monica Enith Lozano Junio, Jennifer Anne Baratang Taifour, Tarek Escudero, Paola Goltsios, Fani-Fay Soodbakhsh, Sahar Maalaoui, Hana Simard, Éric Titorenko, Vladimir I. Oncotarget Research Paper We have recently found that PE21, an extract from the white willow Salix alba, slows chronological aging and prolongs longevity of the yeast Saccharomyces cerevisiae more efficiently than any of the previously known pharmacological interventions. Here, we investigated mechanisms through which PE21 delays yeast chronological aging and extends yeast longevity. We show that PE21 causes a remodeling of lipid metabolism in chronologically aging yeast, thereby instigating changes in the concentrations of several lipid classes. We demonstrate that such changes in the cellular lipidome initiate three mechanisms of aging delay and longevity extension. The first mechanism through which PE21 slows aging and prolongs longevity consists in its ability to decrease the intracellular concentration of free fatty acids. This postpones an age-related onset of liponecrotic cell death promoted by excessive concentrations of free fatty acids. The second mechanism of aging delay and longevity extension by PE21 consists in its ability to decrease the concentrations of triacylglycerols and to increase the concentrations of glycerophospholipids within the endoplasmic reticulum membrane. This activates the unfolded protein response system in the endoplasmic reticulum, which then decelerates an age-related decline in protein and lipid homeostasis and slows down an aging-associated deterioration of cell resistance to stress. The third mechanisms underlying aging delay and longevity extension by PE21 consists in its ability to change lipid concentrations in the mitochondrial membranes. This alters certain catabolic and anabolic processes in mitochondria, thus amending the pattern of aging-associated changes in several key aspects of mitochondrial functionality. Impact Journals LLC 2019-10-08 /pmc/articles/PMC6791382/ /pubmed/31645900 http://dx.doi.org/10.18632/oncotarget.27209 Text en Copyright: © 2019 Medkour 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 (http://creativecommons.org/licenses/by/3.0/) 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
Medkour, Younes
Mohammad, Karamat
Arlia-Ciommo, Anthony
Svistkova, Veronika
Dakik, Pamela
Mitrofanova, Darya
Rodriguez, Monica Enith Lozano
Junio, Jennifer Anne Baratang
Taifour, Tarek
Escudero, Paola
Goltsios, Fani-Fay
Soodbakhsh, Sahar
Maalaoui, Hana
Simard, Éric
Titorenko, Vladimir I.
Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast
title Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast
title_full Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast
title_fullStr Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast
title_full_unstemmed Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast
title_short Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast
title_sort mechanisms by which pe21, an extract from the white willow salix alba, delays chronological aging in budding yeast
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6791382/
https://www.ncbi.nlm.nih.gov/pubmed/31645900
http://dx.doi.org/10.18632/oncotarget.27209
work_keys_str_mv AT medkouryounes mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT mohammadkaramat mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT arliaciommoanthony mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT svistkovaveronika mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT dakikpamela mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT mitrofanovadarya mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT rodriguezmonicaenithlozano mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT juniojenniferannebaratang mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT taifourtarek mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT escuderopaola mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT goltsiosfanifay mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT soodbakhshsahar mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT maalaouihana mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT simarderic mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast
AT titorenkovladimiri mechanismsbywhichpe21anextractfromthewhitewillowsalixalbadelayschronologicalaginginbuddingyeast