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奶牛泌乳早期骨骼肌蛋白、糖原和脂肪代谢的适应。

Involvement of skeletal muscle protein, glycogen, and fat metabolism in the adaptation on early lactation of dairy cows.

机构信息

Research Unit Nutritional Physiology Oskar Kellner, Leibniz Institute for Farm Animal Biology FBN, Wilhelm-Stahl-Allee 2, 18196 Dummerstorf, Germany.

出版信息

J Proteome Res. 2011 Sep 2;10(9):4252-62. doi: 10.1021/pr200425h. Epub 2011 Aug 9.

Abstract

During early lactation, high-yielding dairy cows cannot consume enough feed to meet nutrient requirements. As a consequence, animals drop into negative energy balance and mobilize body reserves including muscle protein and glycogen for milk production, direct oxidation, and hepatic gluconeogenesis. To examine which muscle metabolic processes contribute to the adaptation during early lactation, six German Holstein cows were blood sampled and muscle biopsied throughout the periparturient period. From pregnancy to lactation, the free plasma amino acid pattern imbalanced and plasma glucose decreased. Several muscle amino acids, as well as total muscle protein, fat, and glycogen, and the expression of glucose transporter-4 were reduced within the first 4 weeks of lactation. The 2-DE and MALDI-TOF-MS analysis identified 43 differentially expressed muscle protein spots throughout the periparturient period. In early lactation, expression of cytoskeletal proteins and enzymes involved in glycogen synthesis and in the TCA cycle was decreased, whereas proteins related to glycolysis, fatty acid degradation, lactate, and ATP production were increased. On the basis of these results, we propose a model in which the muscle breakdown in early lactation provides substrates for milk production by a decoupled Cori cycle favoring hepatic gluconeogenesis and by interfering with feed intake signaling.

摘要

在泌乳早期,高产奶牛无法摄入足够的饲料来满足营养需求。因此,动物会进入负能量平衡状态,并动员包括肌肉蛋白质和糖原在内的身体储备来进行产奶、直接氧化和肝糖异生。为了研究哪些肌肉代谢过程有助于泌乳早期的适应,我们在围产期对六头德国荷斯坦奶牛进行了血液取样和肌肉活检。从怀孕到泌乳,游离血浆氨基酸模式失衡,血糖降低。在泌乳的前 4 周内,几种肌肉氨基酸以及总肌肉蛋白质、脂肪和糖原的含量以及葡萄糖转运蛋白-4 的表达均下降。2-DE 和 MALDI-TOF-MS 分析在围产期期间鉴定出了 43 个差异表达的肌肉蛋白点。在泌乳早期,细胞骨架蛋白和参与糖原合成和 TCA 循环的酶的表达降低,而与糖酵解、脂肪酸降解、乳酸和 ATP 生成相关的蛋白增加。基于这些结果,我们提出了一个模型,即泌乳早期的肌肉分解为产奶提供了底物,这是通过有利于肝糖异生的解偶联科里循环和干扰饲料摄入信号来实现的。

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