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Delta-6-desaturase (FADS2) inhibition and omega-3 fatty acids in skeletal muscle protein turnover

机译:骨骼肌蛋白更新中的Delta-6去饱和酶(FADS2)抑制和omega-3脂肪酸

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Polyunsaturated fatty acids (PUFAs) are essential dietary components. They are not only used for energy, but also act as signaling molecules. The delta-6 desaturase (D6D) enzyme, encoded by the FADS2 gene, is one of two rate limiting enzymes that convert the PUFA precursors – α-linolenic (n-3) and linoleic acid (n-6) to their respective metabolites. Alterations in the D6D enzyme activity alters fatty acid profiles and are associated with metabolic and inflammatory diseases including cardiovascular disease and type 2 diabetes. Omega-3 PUFAs, specifically its constituent fatty acids DHA and EPA, are known for their anti-inflammatory ability and are also beneficial in the prevention of skeletal muscle wasting, however the mechanism for muscle preservation is not well understood. Moreover, little is known of the effects of altering the n-6-3 ratio in the context of a high-fat diet, which is known to downregulate protein synthesis. Twenty C57BL6 male mice were fed a high-fat lard (HFL, 45% fat (mostly lard), 35% carbohydrate and 20% protein, n-6:n-3 PUFA, 13:1) diet for 6 weeks. Mice were then divided into 4 groups (n?=?5 per group): HFL– , high-fat oil– (HFO, 45% fat (mostly Menhaden oil), 35% carbohydrate and 20% protein, n-6:n-3 PUFA, 1:3), HFL+ (HFL diet plus an orally administered FADS2 inhibitor, 100?mg/kg/day), and HFO+ (HFO diet plus an orally administered FADS2 inhibitor, 100?mg/kg/day). After 2 weeks on their respective diets and treatments, animals were sacrificed and gastrocnemius muscle harvested. Protein turnover signaling were analyzed via Western Blot. 4-EBP1 and ribosomal protein S6 expression were measured. A two-way ANOVA revealed no significant change in the phosphorylation of both 4EBP-1 and ribosomal protein S6 with diet or inhibitor. There was a significant reduction in STAT3 phosphorylation with the inhibition of FADS2 (p?=?0.03). Additionally, we measured markers of protein degradation through levels of FOXO phosphorylation, ubiquitin, and LC3B expression; there was a trend towards increased phosphorylation of FOXO (p?=?0.08) and ubiquitinated proteins (p?=?0.05) with FADS2 inhibition. LC3B expression, a marker of autophagy, was significantly higher in the HFL plus FADS2 inhibition group from all other comparisons. Lastly, we analyzed activation of mitochondrial biogenesis which is closely linked with protein synthesis through PGC1-α and Cytochrome-C expression, however no significant differences were associated with either marker across all groups. Collectively, these data suggest that the protective effects of muscle mass by omega-3 fatty acids are from inhibition of protein degradation. Our aim was to determine the role of PUFA metabolites, DHA and EPA, in skeletal muscle protein turnover and assess the effects of n-3s independently. We observed that by inhibiting the FADS2 enzyme, the protective effect of n-3s on protein synthesis and proliferation was lost; concomitantly, protein degradation was increased with FADS2 inhibition regardless of diet.
机译:多不饱和脂肪酸(PUFA)是必不可少的饮食成分。它们不仅用于能源,而且还充当信号分子。由FADS2基因编码的delta-6去饱和酶(D6D)酶是将PUFA前体-α-亚麻酸(n-3)和亚油酸(n-6)转化为其各自代谢产物的两种限速酶之一。 D6D酶活性的改变会改变脂肪酸谱,并与包括心血管疾病和2型糖尿病在内的代谢和炎性疾病有关。 Omega-3 PUFA,特别是其组成脂肪酸DHA和EPA,以其抗炎能力而著称,并且在预防骨骼肌萎缩方面也很有益,但是,对肌肉保存的机制还知之甚少。此外,在高脂饮食的情况下改变n-6 / n-3比例的影响知之甚少,已知该饮食会下调蛋白质合成。给20只C57BL6雄性小鼠喂食高脂猪油(HFL,45%脂肪(主要是猪油),35%碳水化合物和20%蛋白质,n-6:n-3 PUFA,13:1)饮食6周。然后将小鼠分为4组(每组n?=?5):HFL–,高脂油–(HFO,45%脂肪(主要是Menhaden油),35%碳水化合物和20%蛋白质,n-6:n -3 PUFA,1:3),HFL +(HFL饮食加口服FADS2抑制剂,100?mg / kg /天)和HFO +(HFO饮食加口服FADS2抑制剂,100?mg / kg /天)。在各自的饮食和治疗下2周后,处死动物并收获腓肠肌。通过蛋白质印迹分析蛋白质周转信号。测量了4-EBP1和核糖体蛋白S6的表达​​。双向方差分析显示,饮食或抑制剂使4EBP-1和核糖体蛋白S6的磷酸化均无明显变化。 STAT3的磷酸化显着降低,同时抑制了FADS2(p = 0.03)。此外,我们通过FOXO磷酸化,泛素和LC3B表达水平测量了蛋白质降解的标志物。有FADS2抑制作用的FOXO(p = 0.08)和泛素化蛋白(p = 0.05)的磷酸化增加的趋势。从所有其他比较来看,HFL加FADS2抑制组中自噬的标志物LC3B表达明显更高。最后,我们分析了线粒体生物发生的激活,该激活与通过PGC1-α和细胞色素C的蛋白合成密切相关,但是在所有组中,任一标记均无显着差异。总的来说,这些数据表明omega-3脂肪酸对肌肉质量的保护作用来自抑制蛋白质降解。我们的目的是确定PUFA代谢产物DHA和EPA在骨骼肌蛋白更新中的作用,并独立评估n-3s的作用。我们观察到,通过抑制FADS2酶,n-3s对蛋白质合成和增殖的保护作用消失了。同时,无论饮食如何,FADS2抑制都会增加蛋白质降解。

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