Meza-Torres Catherine, Reyes-Torres Iván, Bui Thanh Tung, Campos-Silva Carmen, Rodriguez-Bies Elisabet, Navas Plácido, López-Lluch Guillermo
Department of Physiology, Anatomy and Cell Biology, Andalusian Centre for Developmental Biology, CABD-CSIC, CIBERER, Institute of Health Carlos III, Pablo de Olavide University, Carretera de Utrera km. 1, 41013 Sevilla, Spain.
Grupo de Investigación en Inmunología y Biología Molecular, Universidad del Norte, Barranquilla 760046, Colombia.
Antioxidants (Basel). 2025 Jun 27;14(7):800. doi: 10.3390/antiox14070800.
The balanced control of the synthesis of CoQ along the life of the organism is essential to maintain the respiratory capacity at the mitochondria and the antioxidant protection of cell membranes and plasma lipoproteins. For this reason, we determined the levels of the transcripts of the CoQ-synthome along the life of mice in comparison with the levels of antioxidant enzymes and the levels of CoQ in these animals. Surprisingly, we found that some organs such as liver, kidney and heart show great differences in mRNA levels of some COQ-genes along life whereas others such as the brain or gastrocnemius muscle do not show differences. Interestingly, these differences were not related to the total amount of CoQ in these tissues, indicating a discrepancy between the transcript activity of the CoQ-synthome and the level of the product, CoQ. This likely responds to different regulatory levels including mRNA lifespan and CoQ turnover. Further, resveratrol and physical activity in old animals can modulate some transcripts but many of them are in an organ-dependent effect, indicating a different response to the regulators.
在生物体的整个生命周期中,辅酶Q(CoQ)合成的平衡控制对于维持线粒体的呼吸能力以及细胞膜和血浆脂蛋白的抗氧化保护至关重要。因此,我们测定了小鼠一生中CoQ合成组转录本的水平,并与这些动物体内抗氧化酶的水平和CoQ的水平进行了比较。令人惊讶的是,我们发现肝脏、肾脏和心脏等一些器官在一生中某些CoQ基因的mRNA水平存在很大差异,而大脑或腓肠肌等其他器官则没有差异。有趣的是,这些差异与这些组织中CoQ的总量无关,这表明CoQ合成组的转录活性与产物CoQ的水平之间存在差异。这可能是由于包括mRNA寿命和CoQ周转在内的不同调节水平所致。此外,老年动物中的白藜芦醇和体育活动可以调节一些转录本,但其中许多转录本具有器官依赖性效应,这表明对调节剂的反应不同。