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Milk proteome from in silico data aggregation allows the identification of putative biomarkers of negative energy balance in dairy cows

机译:计算机数据聚合中的牛奶蛋白质组学可以鉴定奶牛负能量平衡的公认生物标志物

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摘要

A better knowledge of the bovine milk proteome and its main drivers is a prerequisite for the modulation of bioactive proteins in milk for human nutrition, as well as for the discovery of biomarkers that are useful in husbandry and veterinary medicine. Milk composition is affected by lactation stage and reflects, in part, the energy balance of dairy cows. We aggregated the cow milk proteins reported in 20 recent proteomics publications to produce an atlas of 4654 unique proteins. A multistep assessment was applied to the milk proteome datasets according to lactation stages and milk fractions, including annotations, pathway analysis and literature mining. Fifty-nine proteins were exclusively detected in milk from early lactation. Among them, we propose six milk proteins as putative biomarkers of negative energy balance based on their implication in metabolic adaptative pathways. These proteins are PCK2, which is a gluconeogenic enzyme; ACAT1 and IVD, which are involved in ketone metabolism; SDHA and UQCRC1, which are related to mitochondrial oxidative metabolism; and LRRC59, which is linked to mammary gland cell proliferation. The cellular origin of these proteins warrants more in-depth research but may constitute part of a molecular signature for metabolic adaptations typical of early lactation.
机译:更好地了解牛乳蛋白质组及其主要驱动因素是调节牛奶中的生物活性蛋白以供人类营养以及发现可用于畜牧业和兽医学的生物标志物的前提。牛奶组成受泌乳阶段的影响,部分反映了奶牛的能量平衡。我们汇总了最近20篇蛋白质组学出版物中报告的牛奶蛋白,以生成4654种独特蛋白图集。根据泌乳阶段和乳汁成分,对乳蛋白组数据集进行多步评估,包括注释,途径分析和文献挖掘。泌乳初期仅在牛奶中检测到59种蛋白质。其中,我们基于其在代谢适应途径中的作用,提出了六种牛奶蛋白作为负能量平衡的假定生物标记。这些蛋白是PCK2,它是一种糖异生酶。 ACAT1和IVD,参与酮的代谢; SDHA和UQCRC1与线粒体的氧化代谢有关; LRRC59与乳腺细胞增殖有关。这些蛋白质的细胞起源值得进行更深入的研究,但可能构成早期泌乳期典型代谢适应的分子标记的一部分。

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