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Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes

Sleep apnea syndrome (SAS) is characterized by recurrent episodes of oxygen desaturation and reoxygenation (intermittent hypoxia [IH]), and is a risk factor for cardiovascular disease (CVD) and insulin resistance/Type 2 diabetes. However, the mechanisms linking IH stress and CVD remain elusive. We e...

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Autores principales: Takasawa, Shin, Itaya-Hironaka, Asako, Makino, Mai, Yamauchi, Akiyo, Sakuramoto-Tsuchida, Sumiyo, Uchiyama, Tomoko, Shobatake, Ryogo, Takeda, Yoshinori, Ota, Hiroyo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603944/
https://www.ncbi.nlm.nih.gov/pubmed/36293268
http://dx.doi.org/10.3390/ijms232012414
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author Takasawa, Shin
Itaya-Hironaka, Asako
Makino, Mai
Yamauchi, Akiyo
Sakuramoto-Tsuchida, Sumiyo
Uchiyama, Tomoko
Shobatake, Ryogo
Takeda, Yoshinori
Ota, Hiroyo
author_facet Takasawa, Shin
Itaya-Hironaka, Asako
Makino, Mai
Yamauchi, Akiyo
Sakuramoto-Tsuchida, Sumiyo
Uchiyama, Tomoko
Shobatake, Ryogo
Takeda, Yoshinori
Ota, Hiroyo
author_sort Takasawa, Shin
collection PubMed
description Sleep apnea syndrome (SAS) is characterized by recurrent episodes of oxygen desaturation and reoxygenation (intermittent hypoxia [IH]), and is a risk factor for cardiovascular disease (CVD) and insulin resistance/Type 2 diabetes. However, the mechanisms linking IH stress and CVD remain elusive. We exposed rat H9c2 and mouse P19.CL6 cardiomyocytes to experimental IH or normoxia for 24 h to analyze the mRNA expression of several cardiomyokines. We found that the mRNA levels of regenerating gene IV (Reg IV) and hepatocyte growth factor (Hgf) in H9c2 and P19.CL6 cardiomyocytes were significantly increased by IH, whereas the promoter activities of the genes were not increased. A target mRNA search of microRNA (miR)s revealed that rat and mouse mRNAs have a potential target sequence for miR-499. The miR-499 level of IH-treated cells was significantly decreased compared to normoxia-treated cells. MiR-499 mimic and non-specific control RNA (miR-499 mimic NC) were introduced into P19.CL6 cells, and the IH-induced upregulation of the genes was abolished by introduction of the miR-499 mimic, but not by the miR-499 mimic NC. These results indicate that IH stress downregulates the miR-499 in cardiomyocytes, resulting in increased levels of Reg IV and Hgf mRNAs, leading to the protection of cardiomyocytes in SAS patients.
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spelling pubmed-96039442022-10-27 Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes Takasawa, Shin Itaya-Hironaka, Asako Makino, Mai Yamauchi, Akiyo Sakuramoto-Tsuchida, Sumiyo Uchiyama, Tomoko Shobatake, Ryogo Takeda, Yoshinori Ota, Hiroyo Int J Mol Sci Article Sleep apnea syndrome (SAS) is characterized by recurrent episodes of oxygen desaturation and reoxygenation (intermittent hypoxia [IH]), and is a risk factor for cardiovascular disease (CVD) and insulin resistance/Type 2 diabetes. However, the mechanisms linking IH stress and CVD remain elusive. We exposed rat H9c2 and mouse P19.CL6 cardiomyocytes to experimental IH or normoxia for 24 h to analyze the mRNA expression of several cardiomyokines. We found that the mRNA levels of regenerating gene IV (Reg IV) and hepatocyte growth factor (Hgf) in H9c2 and P19.CL6 cardiomyocytes were significantly increased by IH, whereas the promoter activities of the genes were not increased. A target mRNA search of microRNA (miR)s revealed that rat and mouse mRNAs have a potential target sequence for miR-499. The miR-499 level of IH-treated cells was significantly decreased compared to normoxia-treated cells. MiR-499 mimic and non-specific control RNA (miR-499 mimic NC) were introduced into P19.CL6 cells, and the IH-induced upregulation of the genes was abolished by introduction of the miR-499 mimic, but not by the miR-499 mimic NC. These results indicate that IH stress downregulates the miR-499 in cardiomyocytes, resulting in increased levels of Reg IV and Hgf mRNAs, leading to the protection of cardiomyocytes in SAS patients. MDPI 2022-10-17 /pmc/articles/PMC9603944/ /pubmed/36293268 http://dx.doi.org/10.3390/ijms232012414 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
Takasawa, Shin
Itaya-Hironaka, Asako
Makino, Mai
Yamauchi, Akiyo
Sakuramoto-Tsuchida, Sumiyo
Uchiyama, Tomoko
Shobatake, Ryogo
Takeda, Yoshinori
Ota, Hiroyo
Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes
title Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes
title_full Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes
title_fullStr Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes
title_full_unstemmed Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes
title_short Upregulation of Reg IV and Hgf mRNAs by Intermittent Hypoxia via Downregulation of microRNA-499 in Cardiomyocytes
title_sort upregulation of reg iv and hgf mrnas by intermittent hypoxia via downregulation of microrna-499 in cardiomyocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603944/
https://www.ncbi.nlm.nih.gov/pubmed/36293268
http://dx.doi.org/10.3390/ijms232012414
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