Department of Chemical Engineering and Analytical Chemistry, Institute for Research on Nutrition and Food Safety (INSA·UB), University of Barcelona, Barcelona, Spain.
Department of Food Hygiene, Faculty of Veterinary Medicine, Shahid Chamran University, Ahvaz, Iran.
J Sep Sci. 2022 Sep;45(18):3614-3623. doi: 10.1002/jssc.202200423. Epub 2022 Aug 3.
Protein profiling of major bovine milk proteins (i.e., whey and casein proteins) is of great interest in food science and technology. This complex set of protein proteoforms may vary with breed, genetics, lactation stage, health, and nutritional status of the animal. Current routine methods for bovine milk protein profiling at the intact level are typically based on capillary electrophoresis-ultraviolet, which does not allow confirming unequivocally the identity of the separated proteins. As an alternative, in this study, we describe for the first time a novel and simple capillary electrophoresis-mass spectrometry method in positive electrospray ionization mode. Under the optimized conditions, capillary electrophoresis-mass spectrometry allowed the separation and identification at the intact level of major bovine milk whey and casein proteins in less than 15 min. Furthermore, high-resolution mass spectrometry confirmed its importance in the reliable characterization of bovine milk protein proteoforms, especially those with slight molecular mass differences, such as β-casein A1 and A2, which are relevant to unequivocally identify milk with specific β-casein compositions (e.g., A2A2 milk, which is widely known as A2 milk). This differentiation was not possible by matrix-assisted laser desorption/ionization mass spectrometry, which provided rapidly and easily a rich but less accurate fingerprint of bovine milk proteins due to the lower mass resolution.
牛乳制品(如乳清蛋白和酪蛋白)的主要蛋白质的蛋白质谱分析在食品科学和技术中具有重要意义。这组复杂的蛋白质翻译后修饰形式可能因品种、遗传、泌乳阶段、动物的健康和营养状况而有所不同。目前,用于完整水平的牛乳制品蛋白质谱分析的常规方法通常基于毛细管电泳-紫外检测,这种方法无法明确确认分离蛋白质的身份。作为替代方法,在本研究中,我们首次描述了一种在正电喷雾电离模式下的新型简单毛细管电泳-质谱法。在优化条件下,毛细管电泳-质谱法允许在不到 15 分钟的时间内分离和鉴定主要牛乳制品的乳清蛋白和酪蛋白的完整水平。此外,高分辨率质谱法证实了其在可靠表征牛乳制品蛋白质翻译后修饰形式中的重要性,特别是那些分子量差异较小的蛋白质,如β-酪蛋白 A1 和 A2,这对于明确鉴定具有特定β-酪蛋白组成的牛奶(例如,被广泛称为 A2 牛奶的 A2A2 牛奶)具有重要意义。基质辅助激光解吸/电离质谱法无法实现这种区分,由于质量分辨率较低,该方法快速且易于提供丰富但不太准确的牛乳制品蛋白质指纹图谱。