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Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis

Fibrosis is an energy-intensive process requiring the activation of fibroblasts to myofibroblasts, resulting in the increased synthesis of extracellular matrix proteins. Little is known about the transcriptional control of energy metabolism in cardiac fibroblast activation, but glutaminolysis has be...

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Autores principales: Chattopadhyaya, Sikta, Nagalingam, Raghu S., Ledingham, D. Allison, Moffatt, Teri L., Al-Hattab, Danah S., Narhan, Pavit, Stecy, Matthew T., O’Hara, Kimberley A., Czubryt, Michael P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101234/
https://www.ncbi.nlm.nih.gov/pubmed/35563778
http://dx.doi.org/10.3390/cells11091471
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author Chattopadhyaya, Sikta
Nagalingam, Raghu S.
Ledingham, D. Allison
Moffatt, Teri L.
Al-Hattab, Danah S.
Narhan, Pavit
Stecy, Matthew T.
O’Hara, Kimberley A.
Czubryt, Michael P.
author_facet Chattopadhyaya, Sikta
Nagalingam, Raghu S.
Ledingham, D. Allison
Moffatt, Teri L.
Al-Hattab, Danah S.
Narhan, Pavit
Stecy, Matthew T.
O’Hara, Kimberley A.
Czubryt, Michael P.
author_sort Chattopadhyaya, Sikta
collection PubMed
description Fibrosis is an energy-intensive process requiring the activation of fibroblasts to myofibroblasts, resulting in the increased synthesis of extracellular matrix proteins. Little is known about the transcriptional control of energy metabolism in cardiac fibroblast activation, but glutaminolysis has been implicated in liver and lung fibrosis. Here we explored how pro-fibrotic TGFβ and its effector scleraxis, which drive cardiac fibroblast activation, regulate genes involved in glutaminolysis, particularly the rate-limiting enzyme glutaminase (GLS1). The GLS1 inhibitor CB-839 attenuated TGFβ-induced fibroblast activation. Cardiac fibroblast activation to myofibroblasts by scleraxis overexpression increased glutaminolysis gene expression, including GLS1, while cardiac fibroblasts from scleraxis-null mice showed reduced expression. TGFβ induced GLS1 expression and increased intracellular glutamine and glutamate levels, indicative of increased glutaminolysis, but in scleraxis knockout cells, these measures were attenuated, and the response to TGFβ was lost. The knockdown of scleraxis in activated cardiac fibroblasts reduced GLS1 expression by 75%. Scleraxis transactivated the human GLS1 promoter in luciferase reporter assays, and this effect was dependent on a key scleraxis-binding E-box motif. These results implicate scleraxis-mediated GLS1 expression as a key regulator of glutaminolysis in cardiac fibroblast activation, and blocking scleraxis in this process may provide a means of starving fibroblasts of the energy required for fibrosis.
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spelling pubmed-91012342022-05-14 Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis Chattopadhyaya, Sikta Nagalingam, Raghu S. Ledingham, D. Allison Moffatt, Teri L. Al-Hattab, Danah S. Narhan, Pavit Stecy, Matthew T. O’Hara, Kimberley A. Czubryt, Michael P. Cells Article Fibrosis is an energy-intensive process requiring the activation of fibroblasts to myofibroblasts, resulting in the increased synthesis of extracellular matrix proteins. Little is known about the transcriptional control of energy metabolism in cardiac fibroblast activation, but glutaminolysis has been implicated in liver and lung fibrosis. Here we explored how pro-fibrotic TGFβ and its effector scleraxis, which drive cardiac fibroblast activation, regulate genes involved in glutaminolysis, particularly the rate-limiting enzyme glutaminase (GLS1). The GLS1 inhibitor CB-839 attenuated TGFβ-induced fibroblast activation. Cardiac fibroblast activation to myofibroblasts by scleraxis overexpression increased glutaminolysis gene expression, including GLS1, while cardiac fibroblasts from scleraxis-null mice showed reduced expression. TGFβ induced GLS1 expression and increased intracellular glutamine and glutamate levels, indicative of increased glutaminolysis, but in scleraxis knockout cells, these measures were attenuated, and the response to TGFβ was lost. The knockdown of scleraxis in activated cardiac fibroblasts reduced GLS1 expression by 75%. Scleraxis transactivated the human GLS1 promoter in luciferase reporter assays, and this effect was dependent on a key scleraxis-binding E-box motif. These results implicate scleraxis-mediated GLS1 expression as a key regulator of glutaminolysis in cardiac fibroblast activation, and blocking scleraxis in this process may provide a means of starving fibroblasts of the energy required for fibrosis. MDPI 2022-04-27 /pmc/articles/PMC9101234/ /pubmed/35563778 http://dx.doi.org/10.3390/cells11091471 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chattopadhyaya, Sikta
Nagalingam, Raghu S.
Ledingham, D. Allison
Moffatt, Teri L.
Al-Hattab, Danah S.
Narhan, Pavit
Stecy, Matthew T.
O’Hara, Kimberley A.
Czubryt, Michael P.
Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis
title Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis
title_full Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis
title_fullStr Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis
title_full_unstemmed Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis
title_short Regulation of Cardiac Fibroblast GLS1 Expression by Scleraxis
title_sort regulation of cardiac fibroblast gls1 expression by scleraxis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101234/
https://www.ncbi.nlm.nih.gov/pubmed/35563778
http://dx.doi.org/10.3390/cells11091471
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