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Simultaneous Determination of L- and D-Amino Acids in Proteins: A Sensitive Method Using Hydrolysis in Deuterated Acid and Liquid Chromatography–Tandem Mass Spectrometry Analysis

机译:同时测定蛋白质中的L和D氨基酸:一种在氘酸中水解和液相色谱-串联质谱分析的灵敏方法

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摘要

Determination of the L- and D-amino acid composition in proteins is important for monitoring process-induced racemization, and thereby protein quality loss, in food and feed. Such analysis has so far been challenging due to the need for sample hydrolysis, which generates racemization, thereby leading to an overestimation of D-amino acids. Here, validation of an LC–MS/MS-based method for the simultaneous determination of L- and D-amino acids in complex biological matrixes, like food and feed, was performed in combination with deuterated HCl hydrolysis. This approach eliminated a racemization-induced bias in the L- and D-amino acid ratios. The LC–MS/MS method was applied for the analysis of 18 free amino acids, with a quantification limit of either 12.5 or 62 ng/mL, except for D-phenylalanine, for which quantification was impaired by background interference from the derivatization agent. For hydrolyzed samples, the composition of 10 L- and D-amino acids pairs could be determined in protein. The average relative standard deviation was 5.5% and 6.1%, depending on the type of hydrolysis tubes. The method was applied on a green protein isolate (lucerne), which contained an average of 0.3% D-amino acids. In conclusion, this method allows for an unbiased analysis of L- and D-amino acid ratios in complex protein samples, such as food and feed.
机译:确定蛋白质中L和D氨基酸的组成对于监测过程诱导的消旋作用以及由此引起的食品和饲料中蛋白质质量损失非常重要。迄今为止,由于需要进行样品水解而产生外消旋作用,从而导致对D-氨基酸的高估,因此此类分析一直具有挑战性。在这里,结合氘化的HCl水解方法,验证了同时测定复杂生物基质(例如食物和饲料)中L和D氨基酸的基于LC-MS / MS的方法的有效性。该方法消除了外消旋引起的L-和D-氨基酸比率的偏差。 LC-MS / MS方法用于分析18种游离氨基酸,定量限为12.5或62 ng / mL,但D-苯丙氨酸除外,其衍生试剂的背景干扰会削弱其定量。对于水解样品,可以确定蛋白质中10个L和D氨基酸对的组成。根据水解管的类型,平均相对标准偏差为5.5%和6.1%。该方法应用于绿色蛋白质分离物(卢塞恩),其中平均含有0.3%的D-氨基酸。总之,该方法可对食品和饲料等复杂蛋白质样品中的L和D氨基酸比例进行无偏分析。

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