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Pre- and Early-Postnatal Nutrition Modify Gene and Protein Expressions of Muscle Energy Metabolism Markers and Phospholipid Fatty Acid Composition in a Muscle Type Specific Manner in Sheep

机译:产前和产后早期营养修饰绵羊肌肉型特异性方式的肌肉能量代谢标记和磷脂脂肪酸组成的基因和蛋白质表达

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摘要

We previously reported that undernutrition in late fetal life reduced whole-body insulin sensitivity in adult sheep, irrespective of dietary exposure in early postnatal life. Skeletal muscle may play an important role in control of insulin action. We therefore studied a range of putative key muscle determinants of insulin signalling in two types of skeletal muscles (longissimus dorsi (LD) and biceps femoris (BF)) and in the cardiac muscle (ventriculus sinister cordis (VSC)) of sheep from the same experiment. Twin-bearing ewes were fed either 100% (NORM) or 50% (LOW) of their energy and protein requirements during the last trimester of gestation. From day-3 postpartum to 6-months of age (around puberty), twin offspring received a high-carbohydrate-high-fat (HCHF) or a moderate-conventional (CONV) diet, whereafter all males were slaughtered. Females were subsequently raised on a moderate diet and slaughtered at 2-years of age (young adults). The only long-term consequences of fetal undernutrition observed in adult offspring were lower expressions of the insulin responsive glucose transporter 4 (GLUT4) protein and peroxisome proliferator-activated receptor gamma, coactivator 1α (PGC1α) mRNA in BF, but increased PGC1α expression in VSC. Interestingly, the HCHF diet in early postnatal life was associated with somewhat paradoxically increased expressions in LD of a range of genes (but not proteins) related to glucose uptake, insulin signalling and fatty acid oxidation. Except for fatty acid oxidation genes, these changes persisted into adulthood. No persistent expression changes were observed in BF and VSC. The HCHF diet increased phospholipid ratios of n-6-3 polyunsaturated fatty acids in all muscles, even in adults fed identical diets for 1½ years. In conclusion, early postnatal, but not late gestation, nutrition had long-term consequences for a number of determinants of insulin action and metabolism in LD. Tissues other than muscle may account for reduced whole body insulin sensitivity in adult LOW sheep.
机译:我们先前曾报道,胎儿后期营养不良会降低成年绵羊的全身胰岛素敏感性,而与出生后早期的饮食无关。骨骼肌可能在控制胰岛素作用中起重要作用。因此,我们研究了同一组绵羊的两种类型的骨骼肌(背最长肌(LD)和股二头肌(BF))以及心肌(室性腹股沟(VSC))中胰岛素信号的一系列推定关键肌肉决定因素。实验。双胎母羊在妊娠的最后三个月要补充其能量和蛋白质需求的100%(NORM)或50%(LOW)。从产后第3天到6个月大(青春期左右),双胞胎后代都接受高碳水化合物-高脂肪(HCHF)或中度常规(CONV)饮食,此后所有雄性都被宰杀。随后以中等饮食养育雌性,并在2岁时将其宰杀(年轻人)。在成年后代中观察到的胎儿营养不良的唯一长期后果是BF中胰岛素反应性葡萄糖转运蛋白4(GLUT4)蛋白和过氧化物酶体增殖物激活受体γ,共激活因子1α(PGC1α)mRNA的表达降低,但VSC中PGC1α表达增加。有趣的是,出生后早期的HCHF饮食与LD摄取,胰岛素信号传导和脂肪酸氧化相关的一系列基因(但不是蛋白质)在LD中的表达反常增加有关。除了脂肪酸氧化基因,这些变化一直持续到成年。在BF和VSC中未观察到持续表达变化。 HCHF饮食增加了所有肌肉中n-6 / n-3多不饱和脂肪酸的磷脂比率,即使在接受相同饮食1.5年的成年人中也是如此。总之,在产后早期而不是妊娠后期,营养对LD中胰岛素作用和代谢的许多决定因素有长期影响。成年LOW绵羊中,肌肉以外的组织可能会降低全身胰岛素敏感性。

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