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High Concentration of Low-Density Lipoprotein Results in Disturbances in Mitochondrial Transcription and Functionality in Endothelial Cells

机译:低浓度脂蛋白的高浓度导致线粒体转录和内皮细胞功能紊乱。

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摘要

Concentrations of low-density lipoprotein (LDL) above 0.8 mg/ml have been associated with increased risk for cardiovascular diseases and impaired endothelial functionality. Here, we demonstrate that high concentrations of LDL (1 mg/ml) decreased NOS3 protein and RNA levels in primary human endothelial cells. In addition, RNA sequencing data, in particular splice site usage analysis, showed a shift in NOS3 exon-exon junction reads towards those specifically assigned to nonfunctional transcript isoforms further diminishing the functional NOS3 levels. The reduction in NOS3 was accompanied by decreased migratory capacity, which depends on intact mitochondria and ATP formation. In line with these findings, we also observed a reduced ATP content. While mitochondrial mass was unaffected by high LDL, we found an increase in mitochondrial DNA copy number and mitochondrial RNA transcripts but decreased expression of nuclear genes coding for respiratory chain proteins. Therefore, high LDL treatment most likely results in an imbalance between respiratory chain complex proteins encoded in the mitochondria and in the nucleus resulting in impaired respiratory chain function explaining the reduction in ATP content. In conclusion, high LDL treatment leads to a decrease in active NOS3 and dysregulation of mitochondrial transcription, which is entailed by reduced ATP content and migratory capacity and thus, impairment of endothelial cell functionality.
机译:低密度脂蛋白(LDL)的浓度高于0.8 mg / ml与心血管疾病的风险增加和内皮功能受损有关。在这里,我们证明了高浓度的LDL(1 mg / ml)会降低人原代内皮细胞中的NOS3蛋白和RNA水平。此外,RNA测序数据,特别是剪接位点使用情况分析显示,NOS3外显子-外显子连接读数朝着专门分配给非功能性转录异构体的方向转移,进一步降低了功能性NOS3的水平。 NOS3的减少伴随着迁移能力的下降,这取决于完整的线粒体和ATP的形成。根据这些发现,我们还观察到了ATP含量降低。虽然线粒体质量不受高LDL的影响,但我们发现线粒体DNA拷贝数和线粒体RNA转录本增加,但编码呼吸链蛋白的核基因表达降低。因此,高LDL处理最有可能导致线粒体中编码的呼吸链复合蛋白与细胞核之间失衡,从而导致呼吸链功能受损,从而说明ATP含量降低。总之,高LDL处理导致活性NOS3减少和线粒体转录失调,这是由于ATP含量和迁移能力降低,进而损害了内皮细胞功能所致。

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