Crimmins D L, Gorka J, Thoma R S, Schwartz B D
Howard Hughes Medical Institute Laboratories, Washington University School of Medicine, St. Louis, MO 63110.
J Chromatogr. 1988 Jun 29;443:63-71. doi: 10.1016/s0021-9673(00)94783-6.
A strong cation-exchange (SCX) high-performance liquid chromatography column (sulfoethyl aspartamide, 200 x 4.6 mm) was used to analyze more than 50 peptides, ranging in length from 5 to 20 residues. These data show that the elution positions of the peptides increase monotonically with the number of positively charged residues. [A 60-min linear gradient of 0 to 100% eluent B at 1 ml/min was used, where eluent A is 5 mM phosphate (pH 3.0)-acetonitrile (75:25) and eluent B is eluent A + 0.5 M sodium chloride.] A comparison of SCX with a standard C18 reversed-phase (RP) column [60-min linear gradient of 0 to 60% B at 1 ml/min, where eluent A is 0.1% trifluoroacetic acid (TFA), and eluent B is 0.095% TFA-acetonitrile (10:90)] further demonstrates the utility of SCX in peptide characterization. SCX separated an (Arg)3-containing peptide from the Arg-deleted peptide while RP could not. In addition, SCX and RP resolved the methionine oxidation products of ACTH (4-10) (RP: Met [O] less than Met [O2] less than Met; SCX; Met [O] less than Met less than Met [O2]), suggesting a mixed-mode mechanism for the ion-exchange system. Finally, SCX separated the sulfated and non-sulfated forms of cholecystokinin (26-33) and Leu-enkephalin as well as the N-terminal acetylated forms of neurotensin (8-13) and angiotensinogen (1-14) from the respective unmodified peptides.
使用强阳离子交换(SCX)高效液相色谱柱(磺基乙基天冬酰胺,200×4.6 mm)分析了50多种长度在5至20个残基之间的肽段。这些数据表明,肽段的洗脱位置随带正电荷残基的数量单调增加。[使用了60分钟的线性梯度,从0至100%洗脱液B,流速为1 ml/min,其中洗脱液A为5 mM磷酸盐(pH 3.0)-乙腈(75:25),洗脱液B为洗脱液A + 0.5 M氯化钠。]将SCX与标准C18反相(RP)柱进行比较[60分钟的线性梯度,从0至60% B,流速为1 ml/min,其中洗脱液A为0.1%三氟乙酸(TFA),洗脱液B为0.095% TFA-乙腈(10:90)],进一步证明了SCX在肽段表征中的实用性。SCX能将含(Arg)3的肽段与缺失Arg的肽段分开,而RP则不能。此外,SCX和RP分离了促肾上腺皮质激素(4-10)的甲硫氨酸氧化产物(RP:Met [O] < Met [O2] < Met;SCX:Met [O] < Met < Met [O2]),这表明离子交换系统存在混合模式机制。最后,SCX将胆囊收缩素(26-33)和亮氨酸脑啡肽的硫酸化和非硫酸化形式以及神经降压素(8-13)和血管紧张素原(1-14)的N端乙酰化形式与各自未修饰的肽段分开。