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HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes

Patients with diabetes with coronary microvascular disease (CMD) exhibit higher cardiac mortality than patients without CMD. However, the molecular mechanism by which diabetes promotes CMD is poorly understood. RNA-binding protein human antigen R (HuR) is a key regulator of mRNA stability and transl...

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Autores principales: Si, Rui, Cabrera, Jody Tori O., Tsuji-Hosokawa, Atsumi, Guo, Rui, Watanabe, Makiko, Gao, Lei, Lee, Yun Sok, Moon, Jae-Su, Scott, Brian T., Wang, Jian, Ashton, Anthony W., Rao, Jaladanki N., Wang, Jian-Ying, Yuan, Jason X.-J., Makino, Ayako
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8663561/
https://www.ncbi.nlm.nih.gov/pubmed/34747371
http://dx.doi.org/10.1172/jci.insight.147982
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author Si, Rui
Cabrera, Jody Tori O.
Tsuji-Hosokawa, Atsumi
Guo, Rui
Watanabe, Makiko
Gao, Lei
Lee, Yun Sok
Moon, Jae-Su
Scott, Brian T.
Wang, Jian
Ashton, Anthony W.
Rao, Jaladanki N.
Wang, Jian-Ying
Yuan, Jason X.-J.
Makino, Ayako
author_facet Si, Rui
Cabrera, Jody Tori O.
Tsuji-Hosokawa, Atsumi
Guo, Rui
Watanabe, Makiko
Gao, Lei
Lee, Yun Sok
Moon, Jae-Su
Scott, Brian T.
Wang, Jian
Ashton, Anthony W.
Rao, Jaladanki N.
Wang, Jian-Ying
Yuan, Jason X.-J.
Makino, Ayako
author_sort Si, Rui
collection PubMed
description Patients with diabetes with coronary microvascular disease (CMD) exhibit higher cardiac mortality than patients without CMD. However, the molecular mechanism by which diabetes promotes CMD is poorly understood. RNA-binding protein human antigen R (HuR) is a key regulator of mRNA stability and translation; therefore, we investigated the role of HuR in the development of CMD in mice with type 2 diabetes. Diabetic mice exhibited decreases in coronary flow velocity reserve (CFVR; a determinant of coronary microvascular function) and capillary density in the left ventricle. HuR levels in cardiac endothelial cells (CECs) were significantly lower in diabetic mice and patients with diabetes than the controls. Endothelial-specific HuR-KO mice also displayed significant reductions in CFVR and capillary density. By examining mRNA levels of 92 genes associated with endothelial function, we found that HuR, Cx40, and Nox4 levels were decreased in CECs from diabetic and HuR-KO mice compared with control mice. Cx40 expression and HuR binding to Cx40 mRNA were downregulated in CECs from diabetic mice. Cx40-KO mice exhibited decreased CFVR and capillary density, whereas endothelium-specific Cx40 overexpression increased capillary density and improved CFVR in diabetic mice. These data suggest that decreased HuR contributes to the development of CMD in diabetes through downregulation of gap junction protein Cx40 in CECs.
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spelling pubmed-86635612021-12-15 HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes Si, Rui Cabrera, Jody Tori O. Tsuji-Hosokawa, Atsumi Guo, Rui Watanabe, Makiko Gao, Lei Lee, Yun Sok Moon, Jae-Su Scott, Brian T. Wang, Jian Ashton, Anthony W. Rao, Jaladanki N. Wang, Jian-Ying Yuan, Jason X.-J. Makino, Ayako JCI Insight Research Article Patients with diabetes with coronary microvascular disease (CMD) exhibit higher cardiac mortality than patients without CMD. However, the molecular mechanism by which diabetes promotes CMD is poorly understood. RNA-binding protein human antigen R (HuR) is a key regulator of mRNA stability and translation; therefore, we investigated the role of HuR in the development of CMD in mice with type 2 diabetes. Diabetic mice exhibited decreases in coronary flow velocity reserve (CFVR; a determinant of coronary microvascular function) and capillary density in the left ventricle. HuR levels in cardiac endothelial cells (CECs) were significantly lower in diabetic mice and patients with diabetes than the controls. Endothelial-specific HuR-KO mice also displayed significant reductions in CFVR and capillary density. By examining mRNA levels of 92 genes associated with endothelial function, we found that HuR, Cx40, and Nox4 levels were decreased in CECs from diabetic and HuR-KO mice compared with control mice. Cx40 expression and HuR binding to Cx40 mRNA were downregulated in CECs from diabetic mice. Cx40-KO mice exhibited decreased CFVR and capillary density, whereas endothelium-specific Cx40 overexpression increased capillary density and improved CFVR in diabetic mice. These data suggest that decreased HuR contributes to the development of CMD in diabetes through downregulation of gap junction protein Cx40 in CECs. American Society for Clinical Investigation 2021-11-08 /pmc/articles/PMC8663561/ /pubmed/34747371 http://dx.doi.org/10.1172/jci.insight.147982 Text en © 2021 Si et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Si, Rui
Cabrera, Jody Tori O.
Tsuji-Hosokawa, Atsumi
Guo, Rui
Watanabe, Makiko
Gao, Lei
Lee, Yun Sok
Moon, Jae-Su
Scott, Brian T.
Wang, Jian
Ashton, Anthony W.
Rao, Jaladanki N.
Wang, Jian-Ying
Yuan, Jason X.-J.
Makino, Ayako
HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
title HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
title_full HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
title_fullStr HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
title_full_unstemmed HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
title_short HuR/Cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
title_sort hur/cx40 downregulation causes coronary microvascular dysfunction in type 2 diabetes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8663561/
https://www.ncbi.nlm.nih.gov/pubmed/34747371
http://dx.doi.org/10.1172/jci.insight.147982
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