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CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine

We show that the cyclin-dependent kinase inhibitor 1B (CDKN1B)/p27, previously known as a cell cycle inhibitor, is also localized within mitochondria. The migratory capacity of endothelial cells, which need intact mitochondria, is completely dependent on mitochondrial p27. Mitochondrial p27 improves...

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Autores principales: Ale-Agha, Niloofar, Goy, Christine, Jakobs, Philipp, Spyridopoulos, Ioakim, Gonnissen, Stefanie, Dyballa-Rukes, Nadine, Aufenvenne, Karin, von Ameln, Florian, Zurek, Mark, Spannbrucker, Tim, Eckermann, Olaf, Jakob, Sascha, Gorressen, Simone, Abrams, Marcel, Grandoch, Maria, Fischer, Jens W., Köhrer, Karl, Deenen, René, Unfried, Klaus, Altschmied, Joachim, Haendeler, Judith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6013014/
https://www.ncbi.nlm.nih.gov/pubmed/29927970
http://dx.doi.org/10.1371/journal.pbio.2004408
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author Ale-Agha, Niloofar
Goy, Christine
Jakobs, Philipp
Spyridopoulos, Ioakim
Gonnissen, Stefanie
Dyballa-Rukes, Nadine
Aufenvenne, Karin
von Ameln, Florian
Zurek, Mark
Spannbrucker, Tim
Eckermann, Olaf
Jakob, Sascha
Gorressen, Simone
Abrams, Marcel
Grandoch, Maria
Fischer, Jens W.
Köhrer, Karl
Deenen, René
Unfried, Klaus
Altschmied, Joachim
Haendeler, Judith
author_facet Ale-Agha, Niloofar
Goy, Christine
Jakobs, Philipp
Spyridopoulos, Ioakim
Gonnissen, Stefanie
Dyballa-Rukes, Nadine
Aufenvenne, Karin
von Ameln, Florian
Zurek, Mark
Spannbrucker, Tim
Eckermann, Olaf
Jakob, Sascha
Gorressen, Simone
Abrams, Marcel
Grandoch, Maria
Fischer, Jens W.
Köhrer, Karl
Deenen, René
Unfried, Klaus
Altschmied, Joachim
Haendeler, Judith
author_sort Ale-Agha, Niloofar
collection PubMed
description We show that the cyclin-dependent kinase inhibitor 1B (CDKN1B)/p27, previously known as a cell cycle inhibitor, is also localized within mitochondria. The migratory capacity of endothelial cells, which need intact mitochondria, is completely dependent on mitochondrial p27. Mitochondrial p27 improves mitochondrial membrane potential, increases adenosine triphosphate (ATP) content, and is required for the promigratory effect of caffeine. Domain mapping of p27 revealed that the N-terminus and C-terminus are required for those improvements. Further analysis of those regions revealed that the translocation of p27 into the mitochondria and its promigratory activity depend on serine 10 and threonine 187. In addition, mitochondrial p27 protects cardiomyocytes against apoptosis. Moreover, mitochondrial p27 is necessary and sufficient for cardiac myofibroblast differentiation. In addition, p27 deficiency and aging decrease respiration in heart mitochondria. Caffeine does not increase respiration in p27-deficient animals, whereas aged mice display improvement after 10 days of caffeine in drinking water. Moreover, caffeine induces transcriptome changes in a p27-dependent manner, affecting mostly genes relevant for mitochondrial processes. Caffeine also reduces infarct size after myocardial infarction in prediabetic mice and increases mitochondrial p27. Our data characterize mitochondrial p27 as a common denominator that improves mitochondria-dependent processes and define an increase in mitochondrial p27 as a new mode of action of caffeine.
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spelling pubmed-60130142018-07-06 CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine Ale-Agha, Niloofar Goy, Christine Jakobs, Philipp Spyridopoulos, Ioakim Gonnissen, Stefanie Dyballa-Rukes, Nadine Aufenvenne, Karin von Ameln, Florian Zurek, Mark Spannbrucker, Tim Eckermann, Olaf Jakob, Sascha Gorressen, Simone Abrams, Marcel Grandoch, Maria Fischer, Jens W. Köhrer, Karl Deenen, René Unfried, Klaus Altschmied, Joachim Haendeler, Judith PLoS Biol Research Article We show that the cyclin-dependent kinase inhibitor 1B (CDKN1B)/p27, previously known as a cell cycle inhibitor, is also localized within mitochondria. The migratory capacity of endothelial cells, which need intact mitochondria, is completely dependent on mitochondrial p27. Mitochondrial p27 improves mitochondrial membrane potential, increases adenosine triphosphate (ATP) content, and is required for the promigratory effect of caffeine. Domain mapping of p27 revealed that the N-terminus and C-terminus are required for those improvements. Further analysis of those regions revealed that the translocation of p27 into the mitochondria and its promigratory activity depend on serine 10 and threonine 187. In addition, mitochondrial p27 protects cardiomyocytes against apoptosis. Moreover, mitochondrial p27 is necessary and sufficient for cardiac myofibroblast differentiation. In addition, p27 deficiency and aging decrease respiration in heart mitochondria. Caffeine does not increase respiration in p27-deficient animals, whereas aged mice display improvement after 10 days of caffeine in drinking water. Moreover, caffeine induces transcriptome changes in a p27-dependent manner, affecting mostly genes relevant for mitochondrial processes. Caffeine also reduces infarct size after myocardial infarction in prediabetic mice and increases mitochondrial p27. Our data characterize mitochondrial p27 as a common denominator that improves mitochondria-dependent processes and define an increase in mitochondrial p27 as a new mode of action of caffeine. Public Library of Science 2018-06-21 /pmc/articles/PMC6013014/ /pubmed/29927970 http://dx.doi.org/10.1371/journal.pbio.2004408 Text en © 2018 Ale-Agha et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ale-Agha, Niloofar
Goy, Christine
Jakobs, Philipp
Spyridopoulos, Ioakim
Gonnissen, Stefanie
Dyballa-Rukes, Nadine
Aufenvenne, Karin
von Ameln, Florian
Zurek, Mark
Spannbrucker, Tim
Eckermann, Olaf
Jakob, Sascha
Gorressen, Simone
Abrams, Marcel
Grandoch, Maria
Fischer, Jens W.
Köhrer, Karl
Deenen, René
Unfried, Klaus
Altschmied, Joachim
Haendeler, Judith
CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine
title CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine
title_full CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine
title_fullStr CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine
title_full_unstemmed CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine
title_short CDKN1B/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—New mode of action for caffeine
title_sort cdkn1b/p27 is localized in mitochondria and improves respiration-dependent processes in the cardiovascular system—new mode of action for caffeine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6013014/
https://www.ncbi.nlm.nih.gov/pubmed/29927970
http://dx.doi.org/10.1371/journal.pbio.2004408
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