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Mitochondrial pathways to cardiac recovery: TFAM

机译:线粒体心脏恢复途径:TFAM

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Mitochondrial dysfunction underlines a multitude of pathologies; however, studies are scarce that rescue the mitochondria for cellular resuscitation. Exploration into the protective role of mitochondrial transcription factor A (TFAM) and its mitochondrial functions respective to cardiomyocyte death are in need of further investigation. TFAM is a gene regulator that acts to mitigate calcium mishandling and ROS production by wrapping around mitochondrial DNA (mtDNA) complexes. TFAM's regulatory functions over serca2a, NFAT, and Lon protease contribute to cardiomyocyte stability. Calcium-and ROS-dependent proteases, calpains, and matrix metalloproteinases (MMPs) are abundantly found upregulated in the failing heart. TFAM's regulatory role over ROS production and calcium mishandling leads to further investigation into the cardioprotective role of exogenous TFAM. In an effort to restabilize physiological and contractile activity of cardiomyocytes in HF models, we propose that TFAM-packed exosomes (TFAM-PE) will act therapeutically by mitigating mitochondrial dysfunction. Notably, this is the first mention of exosomal delivery of transcription factors in the literature. Here we elucidate the role of TFAM in mitochondrial rescue and focus on its therapeutic potential.
机译:线粒体功能障碍强调了多种病理。然而,很少有研究可以挽救线粒体进行细胞复苏。线粒体转录因子A(TFAM)的保护作用及其与心肌细胞死亡相关的线粒体功能的探索有待进一步研究。 TFAM是一种基因调节剂,通过包裹线粒体DNA(mtDNA)复合物来减轻钙的错误处理和ROS的产生。 TFAM对serca2a,NFAT和Lon蛋白酶的调节功能有助于心肌细胞的稳定性。钙和ROS依赖性蛋白酶,钙蛋白酶和基质金属蛋白酶(MMP)在衰竭心脏中大量上调。 TFAM对ROS产生和钙处理不当的调节作用导致进一步研究外源TFAM的心脏保护作用。为了在HF模型中恢复心肌细胞的生理和收缩活性,我们提出TFAM包裹的外泌体(TFAM-PE)将通过减轻线粒体功能障碍来发挥治疗作用。值得注意的是,这是文献中首次提及转录因子的外体递送。在这里,我们阐明了TFAM在线粒体拯救中的作用,并将重点放在其治疗潜力上。

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