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Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection

A variety of programmed cell death types have been shown to participate in the loss of smooth muscle cells (SMCs) during the development of aortic dissection (AD), but it is still largely unclear whether ferroptosis is involved in the development of AD. In the present study, we found that the expres...

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Autores principales: Li, Na, Yi, Xin, He, Yi, Huo, Bo, Chen, Yue, Zhang, Zihao, Wang, Qunhui, Li, Yi, Zhong, Xiaoxuan, Li, Rui, Zhu, Xue-Hai, Fang, Zemin, Wei, Xiang, Jiang, Ding-Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9274489/
https://www.ncbi.nlm.nih.gov/pubmed/35844806
http://dx.doi.org/10.7150/ijbs.72528
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author Li, Na
Yi, Xin
He, Yi
Huo, Bo
Chen, Yue
Zhang, Zihao
Wang, Qunhui
Li, Yi
Zhong, Xiaoxuan
Li, Rui
Zhu, Xue-Hai
Fang, Zemin
Wei, Xiang
Jiang, Ding-Sheng
author_facet Li, Na
Yi, Xin
He, Yi
Huo, Bo
Chen, Yue
Zhang, Zihao
Wang, Qunhui
Li, Yi
Zhong, Xiaoxuan
Li, Rui
Zhu, Xue-Hai
Fang, Zemin
Wei, Xiang
Jiang, Ding-Sheng
author_sort Li, Na
collection PubMed
description A variety of programmed cell death types have been shown to participate in the loss of smooth muscle cells (SMCs) during the development of aortic dissection (AD), but it is still largely unclear whether ferroptosis is involved in the development of AD. In the present study, we found that the expression of key ferroptosis regulatory proteins, solute carrier family 7 member 11 (SLC7A11), ferroptosis suppressor protein 1 (FSP1) and glutathione peroxidase 4 (GPX4) were downregulated in aortas of Stanford type A AD (TAAD) patients, and liproxstatin-1, a specific inhibitor of ferroptosis, obviously abolished the β-aminopropionitrile (BAPN)-induced development and rupture of AD in mice. Furthermore, the expression of methyltransferase-like 3 (METTL3), a major methyltransferase of RNA m(6)A, was remarkably upregulated in the aortas of TAAD patients, and the protein levels of METTL3 were negatively correlated with SLC7A11 and FSP1 levels in human aortas. Overexpression of METTL3 in human aortic SMCs (HASMCs) inhibited, while METTL3 knockdown promoted SLC7A11 and FSP1 expression. More importantly, overexpression of METTL3 facilitated imidazole ketone erastin- and cystine deprivation-induced ferroptosis, while knockdown of METTL3 repressed ferroptosis of HASMCs. Overexpression of either SLC7A11 or FSP1 largely abrogated the effect of METTL3 on HASMC ferroptosis. Therefore, we have revealed that ferroptosis is a critical cause of AD in both humans and mice and that METTL3 promotes ferroptosis of HASMCs by inhibiting the expression of SLC7A11 and FSP1. Thus, targeting ferroptosis or m(6)A RNA methylation is a potential novel strategy for the treatment of AD.
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spelling pubmed-92744892022-07-15 Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection Li, Na Yi, Xin He, Yi Huo, Bo Chen, Yue Zhang, Zihao Wang, Qunhui Li, Yi Zhong, Xiaoxuan Li, Rui Zhu, Xue-Hai Fang, Zemin Wei, Xiang Jiang, Ding-Sheng Int J Biol Sci Research Paper A variety of programmed cell death types have been shown to participate in the loss of smooth muscle cells (SMCs) during the development of aortic dissection (AD), but it is still largely unclear whether ferroptosis is involved in the development of AD. In the present study, we found that the expression of key ferroptosis regulatory proteins, solute carrier family 7 member 11 (SLC7A11), ferroptosis suppressor protein 1 (FSP1) and glutathione peroxidase 4 (GPX4) were downregulated in aortas of Stanford type A AD (TAAD) patients, and liproxstatin-1, a specific inhibitor of ferroptosis, obviously abolished the β-aminopropionitrile (BAPN)-induced development and rupture of AD in mice. Furthermore, the expression of methyltransferase-like 3 (METTL3), a major methyltransferase of RNA m(6)A, was remarkably upregulated in the aortas of TAAD patients, and the protein levels of METTL3 were negatively correlated with SLC7A11 and FSP1 levels in human aortas. Overexpression of METTL3 in human aortic SMCs (HASMCs) inhibited, while METTL3 knockdown promoted SLC7A11 and FSP1 expression. More importantly, overexpression of METTL3 facilitated imidazole ketone erastin- and cystine deprivation-induced ferroptosis, while knockdown of METTL3 repressed ferroptosis of HASMCs. Overexpression of either SLC7A11 or FSP1 largely abrogated the effect of METTL3 on HASMC ferroptosis. Therefore, we have revealed that ferroptosis is a critical cause of AD in both humans and mice and that METTL3 promotes ferroptosis of HASMCs by inhibiting the expression of SLC7A11 and FSP1. Thus, targeting ferroptosis or m(6)A RNA methylation is a potential novel strategy for the treatment of AD. Ivyspring International Publisher 2022-06-21 /pmc/articles/PMC9274489/ /pubmed/35844806 http://dx.doi.org/10.7150/ijbs.72528 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Li, Na
Yi, Xin
He, Yi
Huo, Bo
Chen, Yue
Zhang, Zihao
Wang, Qunhui
Li, Yi
Zhong, Xiaoxuan
Li, Rui
Zhu, Xue-Hai
Fang, Zemin
Wei, Xiang
Jiang, Ding-Sheng
Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection
title Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection
title_full Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection
title_fullStr Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection
title_full_unstemmed Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection
title_short Targeting Ferroptosis as a Novel Approach to Alleviate Aortic Dissection
title_sort targeting ferroptosis as a novel approach to alleviate aortic dissection
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9274489/
https://www.ncbi.nlm.nih.gov/pubmed/35844806
http://dx.doi.org/10.7150/ijbs.72528
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