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Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models

Impaired angiogenesis in diabetes is a key process contributing to ischemic diseases such as peripheral arterial disease. Epigenetic mechanisms, including those mediated by long noncoding RNAs (lncRNAs), are crucial links connecting diabetes and the related chronic tissue ischemia. Here we identify...

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Autores principales: Tang, Xiaofang, Luo, Yingjun, Yuan, Dongqiang, Calandrelli, Riccardo, Malhi, Naseeb Kaur, Sriram, Kiran, Miao, Yifei, Lou, Chih-Hong, Tsark, Walter, Tapia, Alonso, Chen, Aleysha T., Zhang, Guangyu, Roeth, Daniel, Kalkum, Markus, Wang, Zhao V., Chien, Shu, Natarajan, Rama, Cooke, John P., Zhong, Sheng, Chen, Zhen Bouman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9888385/
https://www.ncbi.nlm.nih.gov/pubmed/36512424
http://dx.doi.org/10.1172/JCI161759
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author Tang, Xiaofang
Luo, Yingjun
Yuan, Dongqiang
Calandrelli, Riccardo
Malhi, Naseeb Kaur
Sriram, Kiran
Miao, Yifei
Lou, Chih-Hong
Tsark, Walter
Tapia, Alonso
Chen, Aleysha T.
Zhang, Guangyu
Roeth, Daniel
Kalkum, Markus
Wang, Zhao V.
Chien, Shu
Natarajan, Rama
Cooke, John P.
Zhong, Sheng
Chen, Zhen Bouman
author_facet Tang, Xiaofang
Luo, Yingjun
Yuan, Dongqiang
Calandrelli, Riccardo
Malhi, Naseeb Kaur
Sriram, Kiran
Miao, Yifei
Lou, Chih-Hong
Tsark, Walter
Tapia, Alonso
Chen, Aleysha T.
Zhang, Guangyu
Roeth, Daniel
Kalkum, Markus
Wang, Zhao V.
Chien, Shu
Natarajan, Rama
Cooke, John P.
Zhong, Sheng
Chen, Zhen Bouman
author_sort Tang, Xiaofang
collection PubMed
description Impaired angiogenesis in diabetes is a key process contributing to ischemic diseases such as peripheral arterial disease. Epigenetic mechanisms, including those mediated by long noncoding RNAs (lncRNAs), are crucial links connecting diabetes and the related chronic tissue ischemia. Here we identify the lncRNA that enhances endothelial nitric oxide synthase (eNOS) expression (LEENE) as a regulator of angiogenesis and ischemic response. LEENE expression was decreased in diabetic conditions in cultured endothelial cells (ECs), mouse hind limb muscles, and human arteries. Inhibition of LEENE in human microvascular ECs reduced their angiogenic capacity with a dysregulated angiogenic gene program. Diabetic mice deficient in Leene demonstrated impaired angiogenesis and perfusion following hind limb ischemia. Importantly, overexpression of human LEENE rescued the impaired ischemic response in Leene-knockout mice at tissue functional and single-cell transcriptomic levels. Mechanistically, LEENE RNA promoted transcription of proangiogenic genes in ECs, such as KDR (encoding VEGFR2) and NOS3 (encoding eNOS), potentially by interacting with LEO1, a key component of the RNA polymerase II–associated factor complex and MYC, a crucial transcription factor for angiogenesis. Taken together, our findings demonstrate an essential role for LEENE in the regulation of angiogenesis and tissue perfusion. Functional enhancement of LEENE to restore angiogenesis for tissue repair and regeneration may represent a potential strategy to tackle ischemic vascular diseases.
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spelling pubmed-98883852023-02-06 Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models Tang, Xiaofang Luo, Yingjun Yuan, Dongqiang Calandrelli, Riccardo Malhi, Naseeb Kaur Sriram, Kiran Miao, Yifei Lou, Chih-Hong Tsark, Walter Tapia, Alonso Chen, Aleysha T. Zhang, Guangyu Roeth, Daniel Kalkum, Markus Wang, Zhao V. Chien, Shu Natarajan, Rama Cooke, John P. Zhong, Sheng Chen, Zhen Bouman J Clin Invest Research Article Impaired angiogenesis in diabetes is a key process contributing to ischemic diseases such as peripheral arterial disease. Epigenetic mechanisms, including those mediated by long noncoding RNAs (lncRNAs), are crucial links connecting diabetes and the related chronic tissue ischemia. Here we identify the lncRNA that enhances endothelial nitric oxide synthase (eNOS) expression (LEENE) as a regulator of angiogenesis and ischemic response. LEENE expression was decreased in diabetic conditions in cultured endothelial cells (ECs), mouse hind limb muscles, and human arteries. Inhibition of LEENE in human microvascular ECs reduced their angiogenic capacity with a dysregulated angiogenic gene program. Diabetic mice deficient in Leene demonstrated impaired angiogenesis and perfusion following hind limb ischemia. Importantly, overexpression of human LEENE rescued the impaired ischemic response in Leene-knockout mice at tissue functional and single-cell transcriptomic levels. Mechanistically, LEENE RNA promoted transcription of proangiogenic genes in ECs, such as KDR (encoding VEGFR2) and NOS3 (encoding eNOS), potentially by interacting with LEO1, a key component of the RNA polymerase II–associated factor complex and MYC, a crucial transcription factor for angiogenesis. Taken together, our findings demonstrate an essential role for LEENE in the regulation of angiogenesis and tissue perfusion. Functional enhancement of LEENE to restore angiogenesis for tissue repair and regeneration may represent a potential strategy to tackle ischemic vascular diseases. American Society for Clinical Investigation 2023-02-01 /pmc/articles/PMC9888385/ /pubmed/36512424 http://dx.doi.org/10.1172/JCI161759 Text en © 2023 Tang 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
Tang, Xiaofang
Luo, Yingjun
Yuan, Dongqiang
Calandrelli, Riccardo
Malhi, Naseeb Kaur
Sriram, Kiran
Miao, Yifei
Lou, Chih-Hong
Tsark, Walter
Tapia, Alonso
Chen, Aleysha T.
Zhang, Guangyu
Roeth, Daniel
Kalkum, Markus
Wang, Zhao V.
Chien, Shu
Natarajan, Rama
Cooke, John P.
Zhong, Sheng
Chen, Zhen Bouman
Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models
title Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models
title_full Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models
title_fullStr Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models
title_full_unstemmed Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models
title_short Long noncoding RNA LEENE promotes angiogenesis and ischemic recovery in diabetes models
title_sort long noncoding rna leene promotes angiogenesis and ischemic recovery in diabetes models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9888385/
https://www.ncbi.nlm.nih.gov/pubmed/36512424
http://dx.doi.org/10.1172/JCI161759
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