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Aged Nicotinamide Riboside Kinase 2 Deficient Mice Present an Altered Response to Endurance Exercise Training

机译:老年烟酰胺核糖激酶2缺陷小鼠对耐力运动训练的反应有所改变

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摘要

>Background: Skeletal muscle aging is marked by the development of a sarcopenic phenotype, a global decline of muscle energetic capacities, and an intolerance to exercise. Among the metabolic disorders involved in this syndrome, NAD metabolism was shown to be altered in skeletalmuscle, with an important role for the NAMPT enzyme recycling the nicotinamide precursor. An alternative pathway for NAD biosynthesis has been described for the nicotinamide riboside vitamin B3 precursor used by the NMRK kinases, including the striated muscle-specific NMRK2.>Aim: With this study, our goal is to explore the ability of 16-month-old Nmrk2−/− mice to perform endurance exercise and study the consequences on muscle adaptation to exercise.>Methods: 10 control and 6 Nmrk2−/− mice were used and randomly assigned to sedentary and treadmill endurance training groups. After 9 weeks of training, heart and skeletal muscle samples were harvested and used for gene expression analysis, NAD levels measurements and immunohistochemistry staining.>Results: Endurance training triggered a reduction in the expression of Cpt1b and AcadL genes involved in fatty acid catabolism in the heart of Nmrk2−/− mice, not in control mice. NAD levels were not altered in heart or skeletal muscle, nor at baseline neither after exercise training in any group. Myh7 gene encoding for the slow MHC-I was more strongly induced by exercise in Nmrk2−/− mice than in controls. Moreover, IL-15 expression levels is higher in Nmrk2−/− mice skeletal muscle at baseline compared to controls. No fiber type switch was observed in plantaris after exercise, but fast fibers diameter was reduced in aged control mice, not in Nmrk2−/− mice. No fiber type switch or diameter modification was observed in soleus muscle.>Conclusion: In this study, we demonstrated for the first time a phenotype in old Nmrk2−/− mice in response to endurance exercise training. Although NMRK2 seems to be predominantly dispensable to maintain global NAD levels in heart and skeletal muscle, we demonstrated a maladaptive metabolic response to exercise in cardiac and skeletal muscle, showing that NMRK2 has a specific and restricted role in NAD signaling compared to the NAMPT pathway.
机译:>背景:骨骼肌衰老的特征是肌肉减少表型的发展,肌肉活力的全面下降以及对运动的不耐受。在与该综合征有关的代谢疾病中,NAD代谢在骨骼肌中发生了变化,这对回收烟酰胺前体的NAMPT酶具有重要作用。已为NMRK激酶使用的烟酰胺核糖苷维生素B3前体(包括横纹肌特异性NMRK2)描述了另一种NAD生物合成途径。>目的:我们的目标是探索这种能力。对16个月大的Nmrk2 -/-小鼠进行耐力运动并研究其对肌肉适应运动的影响。>方法: 10个对照和6个Nmrk2 -使用// 小鼠,并随机分配至久坐和跑步机耐力训练组。经过9周的训练,采集了心脏和骨骼肌样本,并将其用于基因表达分析,NAD水平测量和免疫组织化学染色。>结果:耐力训练触发了所涉及的Cpt1b和AcadL基因表达的减少在Nmrk2 -/-小鼠心脏中的脂肪酸分解代谢中起作用,而不是在对照小鼠中。在任何组中进行运动训练后,心脏或骨骼肌中的NAD水平都没有改变,基线也没有改变。 Nmrk2 -/-小鼠的运动较对照组更强烈地诱导了编码慢MHC-1的Myh7基因。此外,与对照组相比,Nmrk2 -/-小鼠骨骼肌中的IL-15表达水平较高。运动后plant足未见纤维类型转换,但老年对照组小鼠的快速纤维直径减少,而Nmrk2 -// 小鼠则没有。在比目鱼肌中未观察到纤维类型转换或直径改变。>结论:在这项研究中,我们首次证明了老的Nmrk2 -// 小鼠的表型有反应进行耐力运动训练。尽管NMRK2似乎对于维持心脏和骨骼肌的整体NAD水平起着主要作用,但我们证明了对心脏和骨骼肌运动的适应不良代谢反应,表明NMRK2与NAMPT途径相比在NAD信号传导中具有特定且受限制的作用。

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