Righetti P G, Olivieri E, Viotti A
Department of Agricultural and Industrial Biotechnologies, University of Verona, Italy.
Electrophoresis. 1998 Jul;19(10):1738-41. doi: 10.1002/elps.1150191035.
Modified capillary zone electrophoresis of zeins in strongly acidic, isoelectric buffers is reported for screening of maize (Zea mays L.) lines. The optimized background electrolyte contained 40 mM aspartic acid (pH = pI = 2.77), 8 M urea and 0.5% short-chain hydroxyethylcellulose (Mn 27000 Da) (apparent pH in 8 M urea: 3.9). Due to the low conductivity of such a buffer (0.7 mmhos), separations can be carried out at 800 V/cm, even in relatively large bore capillaries (50 microm ID), ensuring good sensitivity. The zein patterns thus obtained are species-specific and allow easy identification of all maize lines tested. No adsorption of proteins to the silica wall is observed and high reproducibility in peak areas and transit times is obtained. The relatively slow migration time (ca. 30 min), even under such a high voltage gradient, is attributed to the paucity of basic amino acid residues typical of zeins, leading to an unfavorable charge/ mass ratio due to the modest net positive charge at the operative pH.
本文报道了在强酸性等电缓冲液中对玉米醇溶蛋白进行改良毛细管区带电泳,用于筛选玉米(Zea mays L.)品系。优化后的背景电解质含有40 mM天冬氨酸(pH = pI = 2.77)、8 M尿素和0.5%短链羟乙基纤维素(Mn 27000 Da)(8 M尿素中的表观pH:3.9)。由于这种缓冲液的电导率较低(0.7毫西门子),即使在相对大内径的毛细管(50微米内径)中,也能在800 V/cm的电压下进行分离,确保了良好的灵敏度。由此获得的玉米醇溶蛋白图谱具有物种特异性,能够轻松鉴定所有测试的玉米品系。未观察到蛋白质吸附到硅胶壁上,并且在峰面积和迁移时间方面具有很高的重现性。即使在如此高的电压梯度下,迁移时间相对较慢(约30分钟),这归因于玉米醇溶蛋白中典型的碱性氨基酸残基较少,在操作pH下净正电荷适中,导致电荷/质量比不利。