Lottspeich F
Hoppe Seylers Z Physiol Chem. 1980 Dec;361(12):1829-34. doi: 10.1515/bchm2.1980.361.2.1829.
In recent years high-pressure liquid chromatography has found increasing application in protein chemistry for the identification of the phenylthiohydantoin derivatives of amino acids. For routine microsequencing none of the solvent systems so far published have proved ideal for this application. By using a ternary solvent system we have been able to achieve a rapid isocratic separation of the usual amino acid derivatives with the exception of the pair Gln greater than PhNCS/Ser greater than PhNCS. In practice discriminating between these two derivatives is seldom a problem because Gln greater than PhNCS is partially de-amidated during the conversion and is therefore always accompanied by Glu greater than PhNCS. The dependence of the retention times from pH, buffer composition, buffer concentration, and temperature will be discussed.
近年来,高效液相色谱法在蛋白质化学中越来越多地用于鉴定氨基酸的苯硫代乙内酰脲衍生物。对于常规微量测序,迄今为止公布的溶剂系统都未证明适用于此应用。通过使用三元溶剂系统,我们能够实现除Gln>PhNCS/Ser>PhNCS这一对之外的常见氨基酸衍生物的快速等度分离。实际上,区分这两种衍生物很少成为问题,因为Gln>PhNCS在转化过程中会部分脱酰胺,因此总是伴有Glu>PhNCS。将讨论保留时间对pH、缓冲液组成、缓冲液浓度和温度的依赖性。