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内皮细胞 MICU1 通过减轻硝化应激介导的心脏微血管损伤缓解糖尿病心肌病。

Endothelial MICU1 alleviates diabetic cardiomyopathy by attenuating nitrative stress-mediated cardiac microvascular injury.

机构信息

Department of Cardiology, Xijing Hospital, The Fourth Military Medical University, Xi'an, China.

State Key Laboratory of Oral & Maxillofacial Reconstruction and Regeneration, National Clinical Research Center for Oral Diseases, Shaanxi Clinical Research Center for Oral Diseases, Department of Medical Rehabilitation, School of Stomatology, The Fourth Military Medical University, Xi'an, China.

出版信息

Cardiovasc Diabetol. 2023 Aug 17;22(1):216. doi: 10.1186/s12933-023-01941-1.

Abstract

BACKGROUND

Myocardial microvascular injury is the key event in early diabetic heart disease. The injury of myocardial microvascular endothelial cells (CMECs) is the main cause and trigger of myocardial microvascular disease. Mitochondrial calcium homeostasis plays an important role in maintaining the normal function, survival and death of endothelial cells. Considering that mitochondrial calcium uptake 1 (MICU1) is a key molecule in mitochondrial calcium regulation, this study aimed to investigate the role of MICU1 in CMECs and explore its underlying mechanisms.

METHODS

To examine the role of endothelial MICU1 in diabetic cardiomyopathy (DCM), we used endothelial-specific MICU1 mice to establish a diabetic mouse model and evaluate the cardiac function. In addition, MICU1 overexpression was conducted by injecting adeno-associated virus 9 carrying MICU1 (AAV9-MICU1). Transcriptome sequencing technology was used to explore underlying molecular mechanisms.

RESULTS

Here, we found that MICU1 expression is decreased in CMECs of diabetic mice. Moreover, we demonstrated that endothelial cell MICU1 knockout exacerbated the levels of cardiac hypertrophy and interstitial myocardial fibrosis and led to a further reduction in left ventricular function in diabetic mice. Notably, we found that AAV9-MICU1 specifically upregulated the expression of MICU1 in CMECs of diabetic mice, which inhibited nitrification stress, inflammatory reaction, and apoptosis of the CMECs, ameliorated myocardial hypertrophy and fibrosis, and promoted cardiac function. Further mechanistic analysis suggested that MICU1 deficiency result in excessive mitochondrial calcium uptake and homeostasis imbalance which caused nitrification stress-induced endothelial damage and inflammation that disrupted myocardial microvascular endothelial barrier function and ultimately promoted DCM progression.

CONCLUSIONS

Our findings demonstrate that MICU1 expression was downregulated in the CMECs of diabetic mice. Overexpression of endothelial MICU1 reduced nitrification stress induced apoptosis and inflammation by inhibiting mitochondrial calcium uptake, which improved myocardial microvascular function and inhibited DCM progression. Our findings suggest that endothelial MICU1 is a molecular intervention target for the potential treatment of DCM.

摘要

背景

心肌微血管损伤是早期糖尿病性心脏病的关键事件。心肌微血管内皮细胞(CMECs)的损伤是心肌微血管疾病的主要原因和触发因素。线粒体钙稳态在维持内皮细胞的正常功能、存活和死亡中起着重要作用。考虑到线粒体钙摄取 1(MICU1)是线粒体钙调节的关键分子,本研究旨在探讨 MICU1 在 CMECs 中的作用及其潜在机制。

方法

为了研究内皮细胞 MICU1 在糖尿病心肌病(DCM)中的作用,我们使用内皮细胞特异性 MICU1 小鼠建立了糖尿病小鼠模型,并评估了心脏功能。此外,通过注射携带 MICU1 的腺相关病毒 9(AAV9-MICU1)来实现 MICU1 的过表达。采用转录组测序技术来探索潜在的分子机制。

结果

在这里,我们发现糖尿病小鼠的 CMECs 中 MICU1 的表达降低。此外,我们证明内皮细胞 MICU1 敲除加剧了糖尿病小鼠的心脏肥大和间质心肌纤维化水平,并导致左心室功能进一步降低。值得注意的是,我们发现 AAV9-MICU1 特异性地上调了糖尿病小鼠 CMECs 中 MICU1 的表达,抑制了硝化应激、炎症反应和 CMEC 凋亡,改善了心肌肥大和纤维化,并促进了心脏功能。进一步的机制分析表明,MICU1 缺乏导致线粒体钙摄取过多和稳态失衡,从而引起硝化应激诱导的内皮损伤和炎症,破坏心肌微血管内皮屏障功能,最终促进 DCM 的进展。

结论

我们的研究结果表明,糖尿病小鼠的 CMECs 中 MICU1 的表达下调。内皮细胞 MICU1 的过表达通过抑制线粒体钙摄取减少了硝化应激诱导的细胞凋亡和炎症,改善了心肌微血管功能并抑制了 DCM 的进展。我们的研究结果表明,内皮细胞 MICU1 是 DCM 潜在治疗的分子干预靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc18/10436431/c17304398bb9/12933_2023_1941_Fig1_HTML.jpg

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