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Extended lifespan, reduced body size and leg skeletal muscle mass, and decreased mitochondria! function in clk-1 transgenic mice

机译:延长寿命,减小身体尺寸和腿部骨骼肌肉质量,并减少线粒体!在clk-1转基因小鼠中的功能

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Mutational inactivation of clk-1, which encodes an enzyme necessary for the biosynthesis of coenzyme Q.(CoQ), extends the lifespan of Caenorhabditis elegans. However, whether mammalian clk-1 regulates the lifespan of mice is not known because clk-1 -deficiencies are embryonic lethal. Here, we investigated the lifespan of clk-1 transgenic mice (Tg96/I), which were rescued from embryonic lethality via the transgenic expression of mouse elk-1. Tg96/I mice lived longer and had smaller bodies than wild-type mice, but Tg96/I mice had CoQlevels equivalent to wild-type mice. The small-sized Tg96/1 mice exhibited reduced whole-body oxygen consumption (V02) during the dark period, and lean leg skeletal muscles with reduced mitochondrial VO2 and ATP content compared with wild-type mice. These findings indicate a close relationship between lifespan extension and decreased mitochondrial function, which was induced by the transgenic expression of clk-1, in leg skeletal muscles that exhibit high metabolic activity.
机译:clk-1的突变失活编码了辅酶Q.(CoQ)生物合成所必需的酶,延长了秀丽隐杆线虫的寿命。然而,由于clk-1缺陷是胚胎致死性的,因此哺乳动物clk-1是否调节小鼠的寿命尚不清楚。在这里,我们调查了clk-1转基因小鼠(Tg96 / I)的寿命,这些小鼠通过转基因表达小鼠elk-1从胚胎致死性中拯救出来。 Tg96 / I小鼠比野生型小鼠寿命更长,体型更小,但是Tg96 / I小鼠的CoQ水平与野生型小鼠相同。与野生型小鼠相比,小型Tg96 / 1小鼠在黑暗时期的全身耗氧量(VO2)降低,而瘦腿骨骼肌的线粒体VO2和ATP含量降低。这些发现表明,在显示出高代谢活性的腿部骨骼肌中,寿命延长与线粒体功能下降之间存在密切的关系,线粒体功能下降是由clk-1的转基因表达诱导的。

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