1 Department of Molecular Medicine, Faculty of Medicine, University of Malaya , Kuala Lumpur, Malaysia .
2 Medical Biotechnology Laboratory, Faculty of Medicine, University of Malaya , Kuala Lumpur, Malaysia .
Breastfeed Med. 2018 Nov;13(9):631-637. doi: 10.1089/bfm.2018.0057. Epub 2018 Oct 26.
Bioactive proteins from milk fat globule membrane (MFGM) play extensive roles in cellular processes and defense mechanisms in infants. The aims of this study were to identify differences in protein compositions in human and caprine MFGM using proteomics and evaluate possible nutritional benefits of caprine milk toward an infant's growth, as an alternative when breastfeeding or human milk administration is not possible or inadequate.
Human and caprine MFGM proteins were isolated and analyzed, initially by polyacrylamide gel electrophoresis, and subsequently by quadrupole time-of-flight liquid chromatography-mass spectrometry. This was then followed by database search and gene ontology analysis. In general, this method selectively analyzed the abundantly expressed proteins in milk MFGM.
Human MFGM contains relatively more abundant bioactive proteins compared with caprine. While a total of 128 abundant proteins were detected in the human MFGM, only 42 were found in that of the caprine. Seven of the bioactive proteins were apparently found to coexist in both human and caprine MFGM.
RESULTS/DISCUSSION: Among the commonly detected MFGM proteins, lactotransferrin, beta-casein, lipoprotein lipase, fatty acid synthase, and butyrophilin subfamily 1 member A1 were highly expressed in human MFGM. On the other hand, alpha-S1-casein and EGF factor 8 protein, which are also nutritionally beneficial, were found in abundance in caprine MFGM. The large number of human MFGM abundant proteins that were generally lacking in caprine appeared to mainly support human metabolic and developmental processes.
Our data demonstrated superiority of human MFGM by having more than one hundred nutritionally beneficial and abundantly expressed proteins, which are clearly lacking in caprine MFGM. The minor similarity in the abundantly expressed bioactive proteins in caprine MFGM, which was detected further, suggests that it is still nutritionally beneficial, and therefore should be included when caprine milk-based formula is used as an alternative.
乳脂肪球膜(MFGM)中的生物活性蛋白在婴儿的细胞过程和防御机制中发挥着广泛的作用。本研究的目的是使用蛋白质组学方法鉴定人和山羊 MFGM 中的蛋白质组成差异,并评估山羊奶对婴儿生长的可能营养益处,作为母乳喂养或人乳喂养不可行或不足时的替代选择。
分离和分析人源和山羊源 MFGM 蛋白,最初通过聚丙烯酰胺凝胶电泳,然后通过四极杆飞行时间液质联用进行分析。随后进行数据库搜索和基因本体分析。一般来说,这种方法选择性地分析了乳 MFGM 中丰富表达的蛋白质。
与山羊相比,人 MFGM 含有更丰富的生物活性蛋白。在人 MFGM 中总共检测到 128 种丰富的蛋白质,而在山羊 MFGM 中仅检测到 42 种。在人 MFGM 和山羊 MFGM 中均发现了 7 种生物活性蛋白。
结果/讨论:在共同检测到的 MFGM 蛋白中,乳铁传递蛋白、β-酪蛋白、脂蛋白脂肪酶、脂肪酸合成酶和富脯氨酸蛋白家族 1 成员 A1 在人 MFGM 中高表达。另一方面,在山羊 MFGM 中发现了丰富的α-S1-酪蛋白和 EGF 因子 8 蛋白,它们也具有营养价值。大量在山羊中普遍缺乏的人 MFGM 丰富蛋白似乎主要支持人类的代谢和发育过程。
我们的数据表明,人 MFGM 具有超过一百种具有营养价值且表达丰富的蛋白质,这在山羊 MFGM 中明显缺乏,因此具有优越性。进一步检测到山羊 MFGM 中丰富的生物活性蛋白的相似性较小,表明其仍然具有营养价值,因此在使用山羊奶配方作为替代时应将其包括在内。