Frenz J, Bourell J, Hancock W S
Department of Medicinal and Analytical Chemistry, Genetech, Inc., South San Francisco, CA 94080.
J Chromatogr. 1990 Jul 20;512:299-314. doi: 10.1016/s0021-9673(01)89497-8.
The combination of high-performance displacement chromatography with continuous flow fast atom bombardment (FAB)-mass spectrometry (MS) offers a means of overcoming the sample capacity limitations imposed by the low flow-rates tolerated in microbore systems employed for directly coupled liquid chromatography-MS. Displacement chromatography is performed at high concentrations with the same equipment and columns as typically used in chromatography at low concentrations. By using this mode of chromatography with a solution of cetyltrimethylammonium bromide as the displacer, the capacity of a reversed-phase column can be increased 50- to 100-fold for separation of a tryptic digest of biosynthetic human growth hormone. Despite the high load, the use of displacement chromatography allowed high-resolution separation of the complex mixture of eighteen major components. On-line analysis by continuous flow FAB-MS yielded high-quality spectra of these peptides and demonstrated that sharp, single-component bands can be obtained in this separation. Along with the major fragments, the chromatogram showed other peptides originating from protein variants in the sample, from non-specific cleavage in the enzymatic digest or from autolysis of trypsin. On-line analysis also allowed selective ion monitoring of the column effluent for individual peptides and confirmed the high efficiency and resolution obtained by preparative displacement separations on HPLC columns and equipment.
高效置换色谱法与连续流快原子轰击(FAB)质谱法(MS)相结合,提供了一种克服直接联用液相色谱 - 质谱的微径系统中低流速所带来的样品容量限制的方法。置换色谱法在高浓度下进行,使用的设备和色谱柱与低浓度色谱法中通常使用的相同。通过使用十六烷基三甲基溴化铵溶液作为置换剂的这种色谱模式,对于生物合成人生长激素的胰蛋白酶消化产物的分离,反相柱的容量可增加50至100倍。尽管负载量很高,但使用置换色谱法仍能对由18种主要成分组成的复杂混合物进行高分辨率分离。通过连续流FAB - MS进行在线分析,可得到这些肽的高质量光谱,并证明在此分离过程中可获得尖锐的单一组分谱带。除了主要片段外,色谱图还显示了样品中源自蛋白质变体、酶消化中非特异性裂解或胰蛋白酶自溶的其他肽段。在线分析还允许对柱流出物中的单个肽段进行选择性离子监测,并证实了在HPLC柱和设备上通过制备性置换分离所获得的高效率和分辨率。