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Comparative proteomic exploration of whey proteins in human and bovine colostrum and mature milk using iTRAQ-coupled LC-MS/MS

机译:使用ITRAQ耦合LC-MS / MS对人和牛初乳和成熟牛奶中乳清蛋白的比较蛋白质组学探索

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摘要

Whey, an essential source of dietary nutrients, is widely used in dairy foods for infants. A total of 584 whey proteins in human and bovine colostrum and mature milk were identified and quantified by the isobaric tag for relative and absolute quantification (iTRAQ) proteomic method. The 424 differentially expressed whey proteins were identified and analyzed according to gene ontology (GO) annotation, Kyoto encyclopedia of genes and genomes (KEGG) pathway, and multivariate statistical analysis. Biological processes principally involved biological regulation and response to stimulus. Major cellular components were extracellular region part and extracellular space. The most prevalent molecular function was protein binding. Twenty immune-related proteins and 13 proteins related to enzyme regulatory activity were differentially expressed in human and bovine milk. Differentially expressed whey proteins participated in many KEGG pathways, including major complement and coagulation cascades and in phagosomes. Whey proteins show obvious differences in expression in human and bovine colostrum and mature milk, with consequences for biological function. The results here increase our understanding of different whey proteomes, which could provide useful information for the development and manufacture of dairy products and nutrient food for infants.The advanced iTRAQ proteomic approach was used to analyze differentially expressed whey proteins in human and bovine colostrum and mature milk.
机译:乳清是膳食营养素的基本来源,广泛用于乳品的婴儿。通过具有相对和绝对定量(ITRAQ)蛋白质组学方法的同学标签来确定人和牛初乳和成熟牛奶中共有584个乳清蛋白和成熟的牛奶。根据基因本体学(GO)注释,基因和基因组(KEGG)途径(KEGG)途径和多变量统计分析,确定并分析424差异表达的乳清蛋白。生物过程主要涉及生物调节和对刺激的反应。主要细胞成分是细胞外区域部分和细胞外空间。最普遍的分子功能是蛋白质结合。 20个免疫相关蛋白质和13种与酶调节活动相关的蛋白质在人和牛奶中差异表达。差异表达的乳清蛋白参与了许多Kegg途径,包括主要补体和凝血级联和吞噬体。乳清蛋白显示出在人和牛初乳和成熟牛奶中表达明显差异,具有生物功能的后果。这里的结果提高了我们对不同乳清蛋白质群体的理解,这可以为婴儿的乳制品和营养食品的开发和制造提供有用的信息。先进的Itraq蛋白质组学方法用于分析人类和牛初乳中的差异表达乳清蛋白和成熟牛奶。

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