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烧伤诱导的心脏线粒体代谢功能障碍的遗传证据。

The Genetic Evidence of Burn-Induced Cardiac Mitochondrial Metabolism Dysfunction.

作者信息

Wen Jake J, Cummins Claire B, Williams Taylor P, Radhakrishnan Ravi S

机构信息

Department of Surgery, University of Texas Medical Branch, Galveston, TX 77555, USA.

出版信息

Biomedicines. 2020 Dec 3;8(12):566. doi: 10.3390/biomedicines8120566.

Abstract

Burn-induced cardiac dysfunction is thought to involve mitochondrial dysfunction, although the mechanisms responsible are unclear. In this study, we used our established model of in vivo burn injury to understand the genetic evidence of burn-induced mitochondrial confusion dysfunction by describing cardiac mitochondrial metabolism-related gene expression after burn. Cardiac tissue was collected at 24 hours after burn injury. An O2K respirometer system was utilized to measure the cardiac mitochondrial function. Oxidative phosphorylation complex activities were determined using enzyme activity assays. RT Profiler PCR array was used to identify the differential regulation of genes involved in mitochondrial biogenesis and metabolism. The quantitative qPCR and Western blotting were applied to validate the differentially expressed genes. Burn-induced cardiac mitochondrial dysfunction was supported by the finding of decreased state 3 respiration, decreased mitochondrial electron transport chain activity in complex I, III, IV, and V, and decreased mitochondrial DNA-encoded gene expression as well as decreased levels of the corresponding proteins after burn injury. Eighty-four mitochondrial metabolism-related gene profiles were measured. The mitochondrial gene profile showed that 29 genes related to mitochondrial energy and metabolism was differentially expressed. Of these 29 genes, 16 were more than 2-fold upregulated and 13 were more than 2-fold downregulated. All genes were validated using qPCR and partial genes were correlated with their protein levels. This study provides preliminary evidence that a large percentage of mitochondrial metabolism-related genes in cardiomyocytes were significantly affected by burn injury.

摘要

烧伤引起的心脏功能障碍被认为与线粒体功能障碍有关,尽管其具体机制尚不清楚。在本研究中,我们利用已建立的体内烧伤模型,通过描述烧伤后心脏线粒体代谢相关基因的表达,来了解烧伤引起的线粒体功能障碍的遗传学证据。在烧伤后24小时收集心脏组织。使用O2K呼吸计系统测量心脏线粒体功能。通过酶活性测定来确定氧化磷酸化复合体的活性。利用RT Profiler PCR芯片来鉴定参与线粒体生物发生和代谢的基因的差异调控。应用定量qPCR和蛋白质印迹法来验证差异表达的基因。烧伤后状态3呼吸降低、复合体I、III、IV和V中线粒体电子传递链活性降低、线粒体DNA编码基因表达降低以及相应蛋白质水平降低,这些结果支持了烧伤引起的心脏线粒体功能障碍。测量了84个线粒体代谢相关的基因谱。线粒体基因谱显示,29个与线粒体能量和代谢相关的基因存在差异表达。在这29个基因中,16个上调超过2倍,13个下调超过2倍。所有基因均通过qPCR验证,部分基因与其蛋白质水平相关。本研究提供了初步证据,表明心肌细胞中很大比例的线粒体代谢相关基因受到烧伤的显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/759b/7761708/676618a5f43d/biomedicines-08-00566-g001.jpg

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