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MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4

Mammalian sirtuins are involved in the control of metabolism and life-span regulation. Here, we link the mitochondrial sirtuin SIRT4 with cellular senescence, skin aging, and mitochondrial dysfunction. SIRT4 expression significantly increased in human dermal fibroblasts undergoing replicative or str...

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Autores principales: Lang, Alexander, Grether-Beck, Susanne, Singh, Madhurendra, Kuck, Fabian, Jakob, Sascha, Kefalas, Andreas, Altinoluk-Hambüchen, Simone, Graffmann, Nina, Schneider, Maren, Lindecke, Antje, Brenden, Heidi, Felsner, Ingo, Ezzahoini, Hakima, Marini, Alessandra, Weinhold, Sandra, Vierkötter, Andrea, Tigges, Julia, Schmidt, Stephan, Stühler, Kai, Köhrer, Karl, Uhrberg, Markus, Haendeler, Judith, Krutmann, Jean, Piekorz, Roland P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4833141/
https://www.ncbi.nlm.nih.gov/pubmed/26959556
http://dx.doi.org/10.18632/aging.100905
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author Lang, Alexander
Grether-Beck, Susanne
Singh, Madhurendra
Kuck, Fabian
Jakob, Sascha
Kefalas, Andreas
Altinoluk-Hambüchen, Simone
Graffmann, Nina
Schneider, Maren
Lindecke, Antje
Brenden, Heidi
Felsner, Ingo
Ezzahoini, Hakima
Marini, Alessandra
Weinhold, Sandra
Vierkötter, Andrea
Tigges, Julia
Schmidt, Stephan
Stühler, Kai
Köhrer, Karl
Uhrberg, Markus
Haendeler, Judith
Krutmann, Jean
Piekorz, Roland P.
author_facet Lang, Alexander
Grether-Beck, Susanne
Singh, Madhurendra
Kuck, Fabian
Jakob, Sascha
Kefalas, Andreas
Altinoluk-Hambüchen, Simone
Graffmann, Nina
Schneider, Maren
Lindecke, Antje
Brenden, Heidi
Felsner, Ingo
Ezzahoini, Hakima
Marini, Alessandra
Weinhold, Sandra
Vierkötter, Andrea
Tigges, Julia
Schmidt, Stephan
Stühler, Kai
Köhrer, Karl
Uhrberg, Markus
Haendeler, Judith
Krutmann, Jean
Piekorz, Roland P.
author_sort Lang, Alexander
collection PubMed
description Mammalian sirtuins are involved in the control of metabolism and life-span regulation. Here, we link the mitochondrial sirtuin SIRT4 with cellular senescence, skin aging, and mitochondrial dysfunction. SIRT4 expression significantly increased in human dermal fibroblasts undergoing replicative or stress-induced senescence triggered by UVB or gamma-irradiation. In-vivo, SIRT4 mRNA levels were upregulated in photoaged vs. non-photoaged human skin. Interestingly, in all models of cellular senescence and in photoaged skin, upregulation of SIRT4 expression was associated with decreased levels of miR-15b. The latter was causally linked to increased SIRT4 expression because miR-15b targets a functional binding site in the SIRT4 gene and transfection of oligonucleotides mimicking miR-15b function prevented SIRT4 upregulation in senescent cells. Importantly, increased SIRT4 negatively impacted on mitochondrial functions and contributed to the development of a senescent phenotype. Accordingly, we observed that inhibition of miR-15b, in a SIRT4-dependent manner, increased generation of mitochondrial reactive oxygen species, decreased mitochondrial membrane potential, and modulated mRNA levels of nuclear encoded mitochondrial genes and components of the senescence-associated secretory phenotype (SASP). Thus, miR-15b is a negative regulator of stress-induced SIRT4 expression thereby counteracting senescence associated mitochondrial dysfunction and regulating the SASP and possibly organ aging, such as photoaging of human skin.
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spelling pubmed-48331412016-04-20 MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4 Lang, Alexander Grether-Beck, Susanne Singh, Madhurendra Kuck, Fabian Jakob, Sascha Kefalas, Andreas Altinoluk-Hambüchen, Simone Graffmann, Nina Schneider, Maren Lindecke, Antje Brenden, Heidi Felsner, Ingo Ezzahoini, Hakima Marini, Alessandra Weinhold, Sandra Vierkötter, Andrea Tigges, Julia Schmidt, Stephan Stühler, Kai Köhrer, Karl Uhrberg, Markus Haendeler, Judith Krutmann, Jean Piekorz, Roland P. Aging (Albany NY) Research Paper Mammalian sirtuins are involved in the control of metabolism and life-span regulation. Here, we link the mitochondrial sirtuin SIRT4 with cellular senescence, skin aging, and mitochondrial dysfunction. SIRT4 expression significantly increased in human dermal fibroblasts undergoing replicative or stress-induced senescence triggered by UVB or gamma-irradiation. In-vivo, SIRT4 mRNA levels were upregulated in photoaged vs. non-photoaged human skin. Interestingly, in all models of cellular senescence and in photoaged skin, upregulation of SIRT4 expression was associated with decreased levels of miR-15b. The latter was causally linked to increased SIRT4 expression because miR-15b targets a functional binding site in the SIRT4 gene and transfection of oligonucleotides mimicking miR-15b function prevented SIRT4 upregulation in senescent cells. Importantly, increased SIRT4 negatively impacted on mitochondrial functions and contributed to the development of a senescent phenotype. Accordingly, we observed that inhibition of miR-15b, in a SIRT4-dependent manner, increased generation of mitochondrial reactive oxygen species, decreased mitochondrial membrane potential, and modulated mRNA levels of nuclear encoded mitochondrial genes and components of the senescence-associated secretory phenotype (SASP). Thus, miR-15b is a negative regulator of stress-induced SIRT4 expression thereby counteracting senescence associated mitochondrial dysfunction and regulating the SASP and possibly organ aging, such as photoaging of human skin. Impact Journals LLC 2016-02-26 /pmc/articles/PMC4833141/ /pubmed/26959556 http://dx.doi.org/10.18632/aging.100905 Text en Copyright: © 2016 Lang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Lang, Alexander
Grether-Beck, Susanne
Singh, Madhurendra
Kuck, Fabian
Jakob, Sascha
Kefalas, Andreas
Altinoluk-Hambüchen, Simone
Graffmann, Nina
Schneider, Maren
Lindecke, Antje
Brenden, Heidi
Felsner, Ingo
Ezzahoini, Hakima
Marini, Alessandra
Weinhold, Sandra
Vierkötter, Andrea
Tigges, Julia
Schmidt, Stephan
Stühler, Kai
Köhrer, Karl
Uhrberg, Markus
Haendeler, Judith
Krutmann, Jean
Piekorz, Roland P.
MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4
title MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4
title_full MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4
title_fullStr MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4
title_full_unstemmed MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4
title_short MicroRNA-15b regulates mitochondrial ROS production and the senescence-associated secretory phenotype through sirtuin 4/SIRT4
title_sort microrna-15b regulates mitochondrial ros production and the senescence-associated secretory phenotype through sirtuin 4/sirt4
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4833141/
https://www.ncbi.nlm.nih.gov/pubmed/26959556
http://dx.doi.org/10.18632/aging.100905
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