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Research Paper Azidothymidine-triphosphate impairs mitochondrial dynamics by disrupting the quality control system

机译:研究论文叠氮胸苷三磷酸通过破坏质量控制体系损害线粒体动力学

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摘要

Highly active anti-retrovirus therapy (HAART) has been used to block the progression and symptoms of human immunodeficiency virus infection. Although it decreases morbidity and mortality, clinical use of HAART has also been linked to various adverse effects such as severe cardiomyopathy resulting from compromised mitochondrial functioning. However, the mechanistic basis for these effects remains unclear. Here, we demonstrate that a key component of HAART, 3?-azido-3?-deoxythymidine (AZT), particularly, its active metabolite AZT-triphosphate (AZT-TP), caused mitochondrial dysfunction, leading to induction of cell death in H9c2 cells derived from rat embryonic myoblasts, which serve as a model for cardiomyopathy. Specifically, treatment with 100 μM AZT for 48 h disrupted the mitochondrial tubular network via accumulation of AZT-TP. The mRNA expression of dynamin-related protein ( Drp ) 1 and the Drp1 receptor mitochondrial fission factor ( Mff ) was upregulated whereas that of optic atrophy 1 ( Opa1 ) was downregulated following AZT treatment. Increased mitochondrial translocation of Drp1, Mff upregulation, and decreased functional Opa1 expression induced by AZT impaired the balance of mitochondrial fission vs. fusion. These data demonstrate that AZT-TP causes cell death by altering mitochondrial dynamics.
机译:高效抗逆转录病毒疗法(HAART)已被用来阻止人类免疫缺陷病毒感染的进程和症状。尽管HAART可以降低发病率和死亡率,但其临床应用还与各种不良反应有关,例如线粒体功能受损导致的严重心肌病。但是,这些作用的机理基础仍不清楚。在这里,我们证明了HAART的关键成分3α-叠氮基3α-脱氧胸苷(AZT),特别是其活性代谢物AZT-三磷酸(AZT-TP)引起线粒体功能障碍,导致诱导H9c2细胞死亡。源自大鼠胚胎成肌细胞的细胞,可作为心肌病的模型。具体而言,用100μMAZT处理48小时会通过积累AZT-TP破坏线粒体的管状网络。 AZT处理后,与动力相关的蛋白质(Drp)1和Drp1受体线粒体分裂因子(Mff)的mRNA表达上调,而视神经萎缩1(Opa1)的mRNA表达下调。 AZT诱导的Drp1的线粒体易位增加,Mff上调和功能性Opa1表达的降低削弱了线粒体裂变与融合的平衡。这些数据表明,AZT-TP通过改变线粒体动力学导致细胞死亡。

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