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SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation

MicroRNA-150 (miR-150) is conserved between rodents and humans, is significantly downregulated during heart failure (HF), and correlates with patient outcomes. We previously reported that miR-150 is protective during myocardial infarction (MI) in part by decreasing cardiomyocyte (CM) apoptosis and t...

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Autores principales: Kawaguchi, Satoshi, Moukette, Bruno, Sepúlveda, Marisa N., Hayasaka, Taiki, Aonuma, Tatsuya, Haskell, Angela K., Mah, Jessica, Liangpunsakul, Suthat, Tang, Yaoliang, Conway, Simon J., Kim, Il-man
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10356860/
https://www.ncbi.nlm.nih.gov/pubmed/37468478
http://dx.doi.org/10.1038/s41419-023-05982-y
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author Kawaguchi, Satoshi
Moukette, Bruno
Sepúlveda, Marisa N.
Hayasaka, Taiki
Aonuma, Tatsuya
Haskell, Angela K.
Mah, Jessica
Liangpunsakul, Suthat
Tang, Yaoliang
Conway, Simon J.
Kim, Il-man
author_facet Kawaguchi, Satoshi
Moukette, Bruno
Sepúlveda, Marisa N.
Hayasaka, Taiki
Aonuma, Tatsuya
Haskell, Angela K.
Mah, Jessica
Liangpunsakul, Suthat
Tang, Yaoliang
Conway, Simon J.
Kim, Il-man
author_sort Kawaguchi, Satoshi
collection PubMed
description MicroRNA-150 (miR-150) is conserved between rodents and humans, is significantly downregulated during heart failure (HF), and correlates with patient outcomes. We previously reported that miR-150 is protective during myocardial infarction (MI) in part by decreasing cardiomyocyte (CM) apoptosis and that proapoptotic small proline-rich protein 1a (Sprr1a) is a direct CM target of miR-150. We also showed that Sprr1a knockdown in mice improves cardiac dysfunction and fibrosis post-MI and that Sprr1a is upregulated in pathological mouse cardiac fibroblasts (CFs) from ischemic myocardium. However, the direct functional relationship between miR-150 and SPRR1A during both post-MI remodeling in mice and human CF (HCF) activation was not established. Here, using a novel miR-150 knockout;Sprr1a-hypomorphic (Sprr1a(hypo/hypo)) mouse model, we demonstrate that Sprr1a knockdown blunts adverse post-MI effects caused by miR-150 loss. Moreover, HCF studies reveal that SPRR1A is upregulated in hypoxia/reoxygenation-treated HCFs and is downregulated in HCFs exposed to the cardioprotective β-blocker carvedilol, which is inversely associated with miR-150 expression. Significantly, we show that the protective roles of miR-150 in HCFs are directly mediated by functional repression of profibrotic SPRR1A. These findings delineate a pivotal functional interaction between miR-150 and SPRR1A as a novel regulatory mechanism pertinent to CF activation and ischemic HF.
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spelling pubmed-103568602023-07-21 SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation Kawaguchi, Satoshi Moukette, Bruno Sepúlveda, Marisa N. Hayasaka, Taiki Aonuma, Tatsuya Haskell, Angela K. Mah, Jessica Liangpunsakul, Suthat Tang, Yaoliang Conway, Simon J. Kim, Il-man Cell Death Dis Article MicroRNA-150 (miR-150) is conserved between rodents and humans, is significantly downregulated during heart failure (HF), and correlates with patient outcomes. We previously reported that miR-150 is protective during myocardial infarction (MI) in part by decreasing cardiomyocyte (CM) apoptosis and that proapoptotic small proline-rich protein 1a (Sprr1a) is a direct CM target of miR-150. We also showed that Sprr1a knockdown in mice improves cardiac dysfunction and fibrosis post-MI and that Sprr1a is upregulated in pathological mouse cardiac fibroblasts (CFs) from ischemic myocardium. However, the direct functional relationship between miR-150 and SPRR1A during both post-MI remodeling in mice and human CF (HCF) activation was not established. Here, using a novel miR-150 knockout;Sprr1a-hypomorphic (Sprr1a(hypo/hypo)) mouse model, we demonstrate that Sprr1a knockdown blunts adverse post-MI effects caused by miR-150 loss. Moreover, HCF studies reveal that SPRR1A is upregulated in hypoxia/reoxygenation-treated HCFs and is downregulated in HCFs exposed to the cardioprotective β-blocker carvedilol, which is inversely associated with miR-150 expression. Significantly, we show that the protective roles of miR-150 in HCFs are directly mediated by functional repression of profibrotic SPRR1A. These findings delineate a pivotal functional interaction between miR-150 and SPRR1A as a novel regulatory mechanism pertinent to CF activation and ischemic HF. Nature Publishing Group UK 2023-07-19 /pmc/articles/PMC10356860/ /pubmed/37468478 http://dx.doi.org/10.1038/s41419-023-05982-y Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Kawaguchi, Satoshi
Moukette, Bruno
Sepúlveda, Marisa N.
Hayasaka, Taiki
Aonuma, Tatsuya
Haskell, Angela K.
Mah, Jessica
Liangpunsakul, Suthat
Tang, Yaoliang
Conway, Simon J.
Kim, Il-man
SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
title SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
title_full SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
title_fullStr SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
title_full_unstemmed SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
title_short SPRR1A is a key downstream effector of MiR-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
title_sort sprr1a is a key downstream effector of mir-150 during both maladaptive cardiac remodeling in mice and human cardiac fibroblast activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10356860/
https://www.ncbi.nlm.nih.gov/pubmed/37468478
http://dx.doi.org/10.1038/s41419-023-05982-y
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