D'Alessandro Angelo, Zolla Lello, Scaloni Andrea
Department of Environmental Sciences, University of Tuscia, Largo dell'Università, SNC, 01100 Viterbo, Italy.
Mol Biosyst. 2011 Mar;7(3):579-97. doi: 10.1039/c0mb00027b. Epub 2010 Sep 29.
Bovine milk represents an essential source of nutrients for lactating calves and a key raw material for human food preparations. A wealth of data are present in the literature dealing with massive proteomic analyses of milk fractions and independent targeted studies on specific groups of proteins, such as caseins, globulins, hormones and cytokines. In this study, we merged data from previous investigations to compile an exhaustive list of 573 non-redundant annotated protein entries. This inventory was exploited for integrated in silico studies, including functional GO term enrichment (FatiGO/Babelomics), multiple pathway and network analyses. As expected, most of the milk proteins were grouped under pathways/networks/ontologies referring to nutrient transport, lipid metabolism and objectification of the immune system response. Notably enough, another functional family was observed as the most statistically significant one, which included proteins involved in the induction of cellular proliferation processes as well as in anatomical and haematological system development. Although the latter function for bovine milk proteins has long been postulated, studies reported so far mainly focused on a handful of molecules and missed the whole overview resulting from an integrated holistic analysis. A preliminary map of the bovine milk proteins interactome was also built up, which will be refined in future as result of the widespread use of quantitative methods in protein interaction studies and consequent reduction of false-positives within associated databases.
牛乳是哺乳期犊牛营养的重要来源,也是人类食品制备的关键原料。文献中有大量数据,涉及对乳成分的大规模蛋白质组学分析以及对特定蛋白质组(如酪蛋白、球蛋白、激素和细胞因子)的独立靶向研究。在本研究中,我们整合了先前调查的数据,编制了一份包含573个非冗余注释蛋白质条目的详尽列表。该清单用于综合的计算机模拟研究,包括功能基因本体富集分析(FatiGO/Babelomics)、多条通路和网络分析。正如预期的那样,大多数乳蛋白被归类到与营养物质运输、脂质代谢和免疫系统反应客观化相关的通路/网络/本体中。值得注意的是,另一个功能家族被观察到具有最高的统计学显著性,其中包括参与诱导细胞增殖过程以及参与解剖学和血液系统发育的蛋白质。尽管牛乳蛋白的后一种功能早已被推测,但迄今为止报道的研究主要集中在少数分子上,而忽略了综合整体分析所得到的全貌。还构建了牛乳蛋白相互作用组的初步图谱,随着蛋白质相互作用研究中定量方法的广泛应用以及相关数据库中假阳性结果的减少,该图谱将在未来得到完善。