Cargando…

SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance

Myocardial fibrosis represents the primary pathological change associated with diabetic cardiomyopathy and heart failure, and it leads to decreased myocardial compliance with impaired cardiac diastolic and systolic function. Quercetin, an active ingredient in various medicinal plants, exerts therape...

Descripción completa

Detalles Bibliográficos
Autores principales: Chang, Xing, Zhang, Tian, Wang, Junyan, Liu, Yan, Yan, Peizheng, Meng, Qingyan, Yin, Yongtian, Wang, Shiyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8486530/
https://www.ncbi.nlm.nih.gov/pubmed/34603599
http://dx.doi.org/10.1155/2021/5876841
_version_ 1784577759683543040
author Chang, Xing
Zhang, Tian
Wang, Junyan
Liu, Yan
Yan, Peizheng
Meng, Qingyan
Yin, Yongtian
Wang, Shiyuan
author_facet Chang, Xing
Zhang, Tian
Wang, Junyan
Liu, Yan
Yan, Peizheng
Meng, Qingyan
Yin, Yongtian
Wang, Shiyuan
author_sort Chang, Xing
collection PubMed
description Myocardial fibrosis represents the primary pathological change associated with diabetic cardiomyopathy and heart failure, and it leads to decreased myocardial compliance with impaired cardiac diastolic and systolic function. Quercetin, an active ingredient in various medicinal plants, exerts therapeutic effects against cardiovascular diseases. Here, we investigate whether SIRT5- and IDH2-related desuccinylation is involved in the underlying mechanism of myocardial fibrosis in heart failure while exploring related therapeutic drugs for mitochondrial quality surveillance. Mouse models of myocardial fibrosis and heart failure, established by transverse aortic constriction (TAC), were administered with quercetin (50 mg/kg) daily for 4 weeks. HL-1 cells were pretreated with quercetin and treated with high glucose (30 mM) in vitro. Cardiac function, western blotting, quantitative PCR, enzyme-linked immunosorbent assay, and immunofluorescence analysis were employed to analyze mitochondrial quality surveillance, oxidative stress, and inflammatory response in myocardial cells, whereas IDH2 succinylation levels were detected using immunoprecipitation. Myocardial fibrosis and heart failure incidence increased after TAC, with abnormal cardiac ejection function. Following high-glucose treatment, HL-1 cell activity was inhibited, causing excess production of reactive oxygen species and inhibition of mitochondrial respiratory complex I/III activity and mitochondrial antioxidant enzyme activity, as well as increased oxidative stress and inflammatory response, imbalanced mitochondrial quality surveillance and homeostasis, and increased apoptosis. Quercetin inhibited myocardial fibrosis and improved cardiac function by increasing mitochondrial energy metabolism and regulating mitochondrial fusion/fission and mitochondrial biosynthesis while inhibiting the inflammatory response and oxidative stress injury. Additionally, TAC inhibited SIRT5 expression at the mitochondrial level and increased IDH2 succinylation. However, quercetin promoted the desuccinylation of IDH2 by increasing SIRT5 expression. Moreover, treatment with si-SIRT5 abolished the protective effect of quercetin on cell viability. Hence, quercetin may promote the desuccinylation of IDH2 through SIRT5, maintain mitochondrial homeostasis, protect mouse cardiomyocytes under inflammatory conditions, and improve myocardial fibrosis, thereby reducing the incidence of heart failure.
format Online
Article
Text
id pubmed-8486530
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-84865302021-10-02 SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance Chang, Xing Zhang, Tian Wang, Junyan Liu, Yan Yan, Peizheng Meng, Qingyan Yin, Yongtian Wang, Shiyuan Oxid Med Cell Longev Research Article Myocardial fibrosis represents the primary pathological change associated with diabetic cardiomyopathy and heart failure, and it leads to decreased myocardial compliance with impaired cardiac diastolic and systolic function. Quercetin, an active ingredient in various medicinal plants, exerts therapeutic effects against cardiovascular diseases. Here, we investigate whether SIRT5- and IDH2-related desuccinylation is involved in the underlying mechanism of myocardial fibrosis in heart failure while exploring related therapeutic drugs for mitochondrial quality surveillance. Mouse models of myocardial fibrosis and heart failure, established by transverse aortic constriction (TAC), were administered with quercetin (50 mg/kg) daily for 4 weeks. HL-1 cells were pretreated with quercetin and treated with high glucose (30 mM) in vitro. Cardiac function, western blotting, quantitative PCR, enzyme-linked immunosorbent assay, and immunofluorescence analysis were employed to analyze mitochondrial quality surveillance, oxidative stress, and inflammatory response in myocardial cells, whereas IDH2 succinylation levels were detected using immunoprecipitation. Myocardial fibrosis and heart failure incidence increased after TAC, with abnormal cardiac ejection function. Following high-glucose treatment, HL-1 cell activity was inhibited, causing excess production of reactive oxygen species and inhibition of mitochondrial respiratory complex I/III activity and mitochondrial antioxidant enzyme activity, as well as increased oxidative stress and inflammatory response, imbalanced mitochondrial quality surveillance and homeostasis, and increased apoptosis. Quercetin inhibited myocardial fibrosis and improved cardiac function by increasing mitochondrial energy metabolism and regulating mitochondrial fusion/fission and mitochondrial biosynthesis while inhibiting the inflammatory response and oxidative stress injury. Additionally, TAC inhibited SIRT5 expression at the mitochondrial level and increased IDH2 succinylation. However, quercetin promoted the desuccinylation of IDH2 by increasing SIRT5 expression. Moreover, treatment with si-SIRT5 abolished the protective effect of quercetin on cell viability. Hence, quercetin may promote the desuccinylation of IDH2 through SIRT5, maintain mitochondrial homeostasis, protect mouse cardiomyocytes under inflammatory conditions, and improve myocardial fibrosis, thereby reducing the incidence of heart failure. Hindawi 2021-09-23 /pmc/articles/PMC8486530/ /pubmed/34603599 http://dx.doi.org/10.1155/2021/5876841 Text en Copyright © 2021 Xing Chang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chang, Xing
Zhang, Tian
Wang, Junyan
Liu, Yan
Yan, Peizheng
Meng, Qingyan
Yin, Yongtian
Wang, Shiyuan
SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance
title SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance
title_full SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance
title_fullStr SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance
title_full_unstemmed SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance
title_short SIRT5-Related Desuccinylation Modification Contributes to Quercetin-Induced Protection against Heart Failure and High-Glucose-Prompted Cardiomyocytes Injured through Regulation of Mitochondrial Quality Surveillance
title_sort sirt5-related desuccinylation modification contributes to quercetin-induced protection against heart failure and high-glucose-prompted cardiomyocytes injured through regulation of mitochondrial quality surveillance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8486530/
https://www.ncbi.nlm.nih.gov/pubmed/34603599
http://dx.doi.org/10.1155/2021/5876841
work_keys_str_mv AT changxing sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT zhangtian sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT wangjunyan sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT liuyan sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT yanpeizheng sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT mengqingyan sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT yinyongtian sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance
AT wangshiyuan sirt5relateddesuccinylationmodificationcontributestoquercetininducedprotectionagainstheartfailureandhighglucosepromptedcardiomyocytesinjuredthroughregulationofmitochondrialqualitysurveillance