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The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4

Catecholamines stimulate the first step of lipolysis by PKA-dependent release of the lipid droplet-associated protein ABHD5 from perilipin to co-activate the lipase ATGL. Here, we unmask a yet unrecognized proteolytic and cardioprotective function of ABHD5. ABHD5 acts in vivo and in vitro as a serin...

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Autores principales: Jebessa, Zegeye H., Shanmukha Kumar, D., Dewenter, Matthias, Lehmann, Lorenz H., Xu, Chang, Schreiter, Friederike, Siede, Dominik, Gong, Xue-Min, Worst, Barbara C, Federico, Guiseppina, Sauer, Sven W., Fischer, Tamas, Wechselberger, Lisa, Müller, Oliver J., Sossalla, Samuel, Dieterich, Christoph, Most, Patrick, Gröne, Herrmann-Josef, Moro, Cedric, Oberer, Monika, Haemmerle, Guenter, Katus, Hugo A., Tyedmers, Jens, Backs, Johannes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6861130/
https://www.ncbi.nlm.nih.gov/pubmed/31742248
http://dx.doi.org/10.1038/s42255-019-0138-4
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author Jebessa, Zegeye H.
Shanmukha Kumar, D.
Dewenter, Matthias
Lehmann, Lorenz H.
Xu, Chang
Schreiter, Friederike
Siede, Dominik
Gong, Xue-Min
Worst, Barbara C
Federico, Guiseppina
Sauer, Sven W.
Fischer, Tamas
Wechselberger, Lisa
Müller, Oliver J.
Sossalla, Samuel
Dieterich, Christoph
Most, Patrick
Gröne, Herrmann-Josef
Moro, Cedric
Oberer, Monika
Haemmerle, Guenter
Katus, Hugo A.
Tyedmers, Jens
Backs, Johannes
author_facet Jebessa, Zegeye H.
Shanmukha Kumar, D.
Dewenter, Matthias
Lehmann, Lorenz H.
Xu, Chang
Schreiter, Friederike
Siede, Dominik
Gong, Xue-Min
Worst, Barbara C
Federico, Guiseppina
Sauer, Sven W.
Fischer, Tamas
Wechselberger, Lisa
Müller, Oliver J.
Sossalla, Samuel
Dieterich, Christoph
Most, Patrick
Gröne, Herrmann-Josef
Moro, Cedric
Oberer, Monika
Haemmerle, Guenter
Katus, Hugo A.
Tyedmers, Jens
Backs, Johannes
author_sort Jebessa, Zegeye H.
collection PubMed
description Catecholamines stimulate the first step of lipolysis by PKA-dependent release of the lipid droplet-associated protein ABHD5 from perilipin to co-activate the lipase ATGL. Here, we unmask a yet unrecognized proteolytic and cardioprotective function of ABHD5. ABHD5 acts in vivo and in vitro as a serine protease cleaving HDAC4. Through the production of an N-terminal polypeptide of HDAC4 (HDAC4-NT), ABHD5 inhibits MEF2-dependent gene expression and thereby controls glucose handling. ABHD5-deficiency leads to neutral lipid storage disease in mice. Cardiac-specific gene therapy of HDAC4-NT does not protect from intra-cardiomyocyte lipid accumulation but strikingly from heart failure, thereby challenging the concept of lipotoxicity-induced heart failure. ABHD5 levels are reduced in failing human hearts and murine transgenic ABHD5 expression protects from pressure-overload induced heart failure. These findings represent a conceptual advance by connecting lipid with glucose metabolism through HDAC4 proteolysis and enable new translational approaches to treat cardiometabolic disease.
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spelling pubmed-68611302020-05-15 The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4 Jebessa, Zegeye H. Shanmukha Kumar, D. Dewenter, Matthias Lehmann, Lorenz H. Xu, Chang Schreiter, Friederike Siede, Dominik Gong, Xue-Min Worst, Barbara C Federico, Guiseppina Sauer, Sven W. Fischer, Tamas Wechselberger, Lisa Müller, Oliver J. Sossalla, Samuel Dieterich, Christoph Most, Patrick Gröne, Herrmann-Josef Moro, Cedric Oberer, Monika Haemmerle, Guenter Katus, Hugo A. Tyedmers, Jens Backs, Johannes Nat Metab Article Catecholamines stimulate the first step of lipolysis by PKA-dependent release of the lipid droplet-associated protein ABHD5 from perilipin to co-activate the lipase ATGL. Here, we unmask a yet unrecognized proteolytic and cardioprotective function of ABHD5. ABHD5 acts in vivo and in vitro as a serine protease cleaving HDAC4. Through the production of an N-terminal polypeptide of HDAC4 (HDAC4-NT), ABHD5 inhibits MEF2-dependent gene expression and thereby controls glucose handling. ABHD5-deficiency leads to neutral lipid storage disease in mice. Cardiac-specific gene therapy of HDAC4-NT does not protect from intra-cardiomyocyte lipid accumulation but strikingly from heart failure, thereby challenging the concept of lipotoxicity-induced heart failure. ABHD5 levels are reduced in failing human hearts and murine transgenic ABHD5 expression protects from pressure-overload induced heart failure. These findings represent a conceptual advance by connecting lipid with glucose metabolism through HDAC4 proteolysis and enable new translational approaches to treat cardiometabolic disease. 2019-11-15 2019-11 /pmc/articles/PMC6861130/ /pubmed/31742248 http://dx.doi.org/10.1038/s42255-019-0138-4 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Jebessa, Zegeye H.
Shanmukha Kumar, D.
Dewenter, Matthias
Lehmann, Lorenz H.
Xu, Chang
Schreiter, Friederike
Siede, Dominik
Gong, Xue-Min
Worst, Barbara C
Federico, Guiseppina
Sauer, Sven W.
Fischer, Tamas
Wechselberger, Lisa
Müller, Oliver J.
Sossalla, Samuel
Dieterich, Christoph
Most, Patrick
Gröne, Herrmann-Josef
Moro, Cedric
Oberer, Monika
Haemmerle, Guenter
Katus, Hugo A.
Tyedmers, Jens
Backs, Johannes
The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4
title The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4
title_full The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4
title_fullStr The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4
title_full_unstemmed The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4
title_short The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4
title_sort lipid droplet-associated protein abhd5 protects the heart through proteolysis of hdac4
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6861130/
https://www.ncbi.nlm.nih.gov/pubmed/31742248
http://dx.doi.org/10.1038/s42255-019-0138-4
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