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Regulation of muscle protein metabolism in sheep and lambs: nutritional, endocrine and genetic aspects

机译:绵羊和羔羊肌肉蛋白质代谢的调节:营养,内分泌和遗传方面

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摘要

Muscle protein accretion, as with the body in general, increases with feed intake. Protein balance across hind limb muscles occurs at energy intakes less than energy balance in the animal as a whole. There is considerable between-sheep variation in muscle protein accretion, and in the relative rates of protein synthesis and degradation, which are in part due to inherent differences in growth potential. Lambs selected for high weight at weaning deposit proportionately more nitrogen in the body than those selected for low weight at weaning. Inherently faster growing lambs have lower rates of protein breakdown in muscle and whole body than those which exhibit slower growth. Differences in sensitivity to insulin and plasma concentration of insulin-like growth factor-1 (IGF-1) indicate that the inherent differences in growth are associated with differences in responsiveness of muscle to hormones, and possible direct effects of IGF-1. Arteriovenous difference methodology, and isotope dilution, have been important tools in improving our understanding of the regulation of muscle protein metabolism.
机译:与人体一般一样,肌肉蛋白质的增加会随着饲料摄入量的增加而增加。整个后肢肌肉的蛋白质平衡发生在能量摄入少于整个动物能量平衡的情况下。绵羊之间的肌肉蛋白质积聚以及蛋白质合成和降解的相对速率之间存在很大的差异,部分原因是生长潜能的固有差异。与断奶时选择低体重的羔羊相比,断奶时选择高体重的羔羊在体内沉积的氮比例更高。与生长较慢的羔羊相比,天生较快的羔羊在肌肉和全身的蛋白质分解率较低。对胰岛素的敏感性和胰岛素样生长因子-1(IGF-1)的血浆浓度的差异表明,生长的固有差异与肌肉对激素的反应性差异以及IGF-1的直接作用有关。动静脉差异法和同位素稀释法已经成为增进我们对肌肉蛋白质代谢调控的理解的重要工具。

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