超卷曲线粒体 DNA 的低水平参与了横向主动脉收缩通过 ZBP1 介导的炎症反应诱发的小鼠心力衰竭。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-07-26 DOI:10.1016/j.yexcr.2024.114187
Fan Yu , Lu Yang , Rongjie Zhang , Fajia Hu , Yong Yuan, Zixu Wang, Wei Yang
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引用次数: 0

摘要

背景:心肌中的炎症在心脏重塑和心力衰竭(HF)的病理生理学中起着至关重要的作用。以往的研究表明,线粒体 DNA(mtDNA)可以以不同的拓扑形式存在。然而,超卷曲/松弛的 mtDNA 比例对心肌细胞炎症反应的具体影响仍鲜为人知。本研究旨在阐明不同类型的mtDNA通过调控ZBP1对心肌细胞炎症反应的不同影响:通过横向主动脉收缩(TAC)或多柔比星(Doxo)诱导建立了小鼠高频模型。通过 HE 染色评估组织病理学变化。用酶联免疫吸附法测定细胞因子水平(IL-1β和IL-6)。进行了 Southern 印迹分析,以检测 mtDNA 的不同拓扑结构。皮尔逊相关分析用于确定超卷曲/松弛的mtDNA比例与炎性细胞因子之间的相关性。反转录定量 PCR(RT-qPCR)用于测量细胞因子(IL-1β、IL-6)和作为 mtDNA 标记的 Dloop 的 mRNA 表达水平:结果:在多索诱导的小鼠心肌中,超卷曲与松弛mtDNA的比率显著增加,而在TAC诱导的小鼠中未观察到显著变化。IL-1β和IL-6的水平与细胞质mtDNA超卷曲/松弛圈比例呈正相关。不同的mtDNA拓扑结构对炎症途径有不同的影响。低超螺旋mtDNA主要通过ZBP1激活NF-κB(Ser536)通路,而高超螺旋mtDNA则显著影响STAT1和STAT2通路。RIPK3-NF-κB通路作为ZBP1的下游靶点,介导了低超螺旋mtDNA诱导的炎症反应。敲除TLR9可增强低超螺旋mtDNA处理的心肌细胞中ZBP1、p-NF-κB和RIPK3的表达,表明TLR9参与了ZBP1在低超螺旋mtDNA诱导的炎症中的抗炎作用:结论:超卷曲与松弛mtDNA的不同比例会影响心肌细胞的炎症反应,并通过ZBP1的参与导致高房颤。ZBP1及其下游炎症机制介导了低超螺旋mtDNA比例诱导的炎症反应。
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Low levels of supercoiled mitochondrial DNA are involved in heart failure induced by transverse aortic constriction in mice via an inflammatory response mediated by ZBP1

Background

Inflammation in the myocardium plays a critical role in cardiac remodeling and the pathophysiology of heart failure (HF). Previous studies have shown that mitochondrial DNA (mtDNA) can exist in different topological forms. However, the specific influence of the ratio of supercoiled/relaxed mtDNA on the inflammatory response in cardiomyocytes remains poorly understood. The aim of this study was to elucidate the differential effects of different mtDNA types on cardiomyocyte inflammation through regulation of ZBP1.

Materials and methods

A mouse model of HF was established by transverse aortic constriction (TAC) or doxorubicin (Doxo) induction. Histopathological changes were assessed by HE staining. ELISA was used to measure cytokine levels (IL-1β and IL-6). Southern blot analysis was performed to examine the different topology of mtDNA. Pearson correlation analysis was used to determine the correlation between the ratio of supercoiled/relaxed mtDNA and inflammatory cytokines. Reverse transcription quantitative PCR (RT-qPCR) was used to measure the mRNA expression levels of cytokines (IL-1β, IL-6) and Dloop, as an mtDNA marker.

Results

The ratio of supercoiled to relaxed mtDNA was significantly increased in the myocardium of Doxo-induced mice, whereas no significant changes were observed in TAC-induced mice. The levels of IL-1β and IL-6 were positively correlated with the cytoplasmic mtDNA supercoiled/relaxed circle ratio. Different mtDNA topology has different effects on inflammatory pathways. Low supercoiled mtDNA primarily activates the NF-κB (Ser536) pathway via ZBP1, whereas high supercoiled mtDNA significantly affects the STAT1 and STAT2 pathways. The RIPK3-NF-κB pathway, as a downstream target of ZBP1, mediates the inflammatory response induced by low supercoiled mtDNA. Knockdown of TLR9 enhances the expression of ZBP1, p-NF-κB, and RIPK3 in cardiomyocytes treated with low supercoiled mtDNA, indicating the involvement of TLR9 in the anti-inflammatory role of ZBP1 in low supercoiled mtDNA-induced inflammation.

Conclusion

Different ratios of supercoiled to relaxed mtDNA influence the inflammatory response of cardiomyocytes and contribute to HF through the involvement of ZBP1. ZBP1, together with its downstream inflammatory mechanisms, mediates the inflammatory response induced by a low ratio of supercoiled mtDNA.

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