食品科学 ›› 2016, Vol. 37 ›› Issue (20): 69-74.doi: 10.7506/spkx1002-6630-201620012

• 成分分析 • 上一篇    下一篇

母乳和牛乳中乳脂肪球膜蛋白质的差异分析

景萌娜,姜铁民,刘 斌,张咚咚,魏京华,王 品,李菊芳,陈历俊   

  1. 1.大连工业大学生物工程学院,辽宁 大连 116034;
    2.北京三元食品股份有限公司,国家母婴乳品健康工程技术研究中心,北京 100163
  • 收稿日期:2016-10-27 修回日期:2016-10-27 出版日期:2016-10-25 发布日期:2016-12-01
  • 通讯作者: 陈历俊
  • 基金资助:

    北京市科技计划项目(D141100004814001)

Analysis of Differences in Milk Fat Globule Membrane Proteins between Breast Milk and Bovine Milk

JING Mengna, JIANG Tiemin, LIU Bin, ZHANG Dongdong, WEI Jinghua, WANG Pin, LI Jufang, CHEN Lijun   

  1. 1. School of Biological Engineering, Dalian Polytechnic University, Dalian 116034, China;
    2. National Maternal and Infant Health Dairy Researching Center, Beijing Sanyuan Foods Co. Ltd., Beijing 100163, China
  • Received:2016-10-27 Revised:2016-10-27 Online:2016-10-25 Published:2016-12-01
  • Contact: CHEN Lijun

摘要:

为比较乳脂肪球膜(milk fat globule membrane,MFGM)蛋白在母乳和牛乳中的差异,采用有机试剂提取法,从母乳和牛乳中提取分离出MFGM蛋白,经皮尔斯TM去垢小柱去除十二烷基硫酸钠后,通过液相色谱-质谱联用技术检测分析,检测结果根据特异性肽段匹配数不小于1筛选后,在母乳和牛乳中分别检测到863 种和454 种蛋白,其中二者共有175 种,分别独有688 种和279 种。将母乳中差异表达的688 种蛋白质按PANTHER数据库进行蛋白质的Gene Ontology(GO)功能注释,这些蛋白主要是细胞部分、细胞器、细胞膜等组分,参与的生物途径有新陈代谢过程、生物调节、刺激性反应、免疫系统过程、再生作用等,具有催化、黏合、转运、酶调节等多种分子功能。另外,母乳中的这些差异蛋白参与氨酰tRNA生物合成、致病性大肠杆菌感染、脂肪酸代谢、丙酸代谢、甾体合成、酸降解等都是牛乳中的乳脂肪球膜蛋白不具有的功能。通过分析得出母乳和牛乳中的MFGM蛋白具有明显差异,虽然有部分组成和功能的重叠,但在丰度和代谢路径上,牛乳MFGM蛋白不能替代母乳MFGM蛋白。

关键词: 乳脂肪球膜蛋白, 母乳, 牛乳, 功能注释, 代谢途径

Abstract:

In order to compare the difference in milk fat globule membrane (MFGM) proteins between breast milk and
bovine milk, MFGM were extracted from milk by organic solvent extraction and lysed in SDS-containing lysis buffer for
analysis by liquid chromatography and mass spectrometry (LC-MS) after the removal of SDS using PierceTM detergent
removal spin column. The results were filtered according to the number of unique peptide ≥ 1. A total of 863 and 454
proteins were identified separately in breast milk and bovine milk, including 175 proteins in common, and 688 and 279
proteins unique for breast milk and bovine milk, respectively. Gene Ontology (GO) analysis of 688 specific MFGM proteins
in human milk showed that they were mainly distributed in cell part, cell organelle, and cell membrane, and involved in
biological pathways such as metabolic processes, biological regulation, response to stimulus, immune system process,
reproduction, and so on. These proteins also participated in many molecular functions, such as catalytic activity, binding, transport
activity and enzyme regulation activity. In addition, these breast milk MFGM proteins were involved in some metabolic pathways,
such as aminoacyl-tRNA biosynthesis, pathogenic Escherichia coli infection, fatty acid metabolism, propanoate metabolism,
steroid biosynthesis, lysine degradation, which were not shown in bovine milk. The MFGM proteins in breast milk and bovine
milk had obvious differences. Although some compositions and functions were overlapped, in terms of abundance and metabolic
pathways, the MFGM proteins in bovine milk could not be replaced by those in breast milk.

Key words: milk fat globule membrane proteins, breast milk, bovine milk, functional annotation, metabolic pathway

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