Wendt H, Dürr E, Thomas R M, Przybylski M, Bosshard H R
Biochemisches Institut, Universität Zürich, Switzerland.
Protein Sci. 1995 Aug;4(8):1563-70. doi: 10.1002/pro.5560040814.
The development of "soft" ionization methods has enabled the mass spectrometric analysis of higher-order structural features of proteins. We have applied electrospray ionization mass spectrometry (ESI-MS) to the analysis of the number and composition of polypeptide chains in homomeric and heteromeric leucine zippers. In comparison with other methods that have been used to analyze leucine zippers, such as analytical ultracentrifugation, gel chromatography, or electrophoretic band shift assays, ESI-MS is very fast and highly sensitive and provides a straightforward way to distinguish between homomeric and heteromeric coiled-coil structures. ESI-MS analyses were carried out on the parallel dimeric leucine zipper domain GCN4-p1 of the yeast transcription factor GCN4 and on three synthetic peptides with the sequences Ac-EYEALEKKLAAX1EAKX2QALEKKLEALEHG-amide: peptide LZ (X1, X2 = Leu), peptide LZ(12A) (X1 = Ala, X2 = Leu), and peptide LZ(16N) (X1 = Leu, X2 = Asn). Equilibrium ultracentrifugation analysis showed that LZ forms a trimeric coiled coil and this could be confirmed unequivocally by ESI-MS as could the dimeric nature of GCN4-p1. The formation of heteromeric two- and three-stranded leucine zippers composed of chains from LZ and LZ(12A), or from GCN4-p1 and LZ, was demonstrated by ESI-MS and confirmed by fluorescence quenching experiments on fluorescein-labeled peptides. The results illustrate the adaptability and flexibility of the leucine zipper motif, properties that could be useful to the design of specific protein assemblies by way of coiled-coil domains.
“软”电离方法的发展使得对蛋白质高阶结构特征进行质谱分析成为可能。我们已将电喷雾电离质谱法(ESI-MS)应用于同源和异源亮氨酸拉链中多肽链的数量及组成分析。与用于分析亮氨酸拉链的其他方法(如分析超速离心法、凝胶色谱法或电泳带迁移分析)相比,ESI-MS速度非常快且灵敏度高,为区分同源和异源卷曲螺旋结构提供了一种直接的方法。对酵母转录因子GCN4的平行二聚体亮氨酸拉链结构域GCN4-p1以及三种具有序列Ac-EYEALEKKLAAX1EAKX2QALEKKLEALEHG-酰胺的合成肽进行了ESI-MS分析:肽LZ(X1、X2 = 亮氨酸)、肽LZ(12A)(X1 = 丙氨酸,X2 = 亮氨酸)和肽LZ(16N)(X1 = 亮氨酸,X2 = 天冬酰胺)。平衡超速离心分析表明LZ形成三聚体卷曲螺旋,这可通过ESI-MS明确证实,GCN4-p1的二聚体性质也可如此证实。由LZ和LZ(12A)的链或GCN4-p1和LZ组成的异源双链和三链亮氨酸拉链的形成通过ESI-MS得到证实,并通过对荧光素标记肽的荧光猝灭实验得到确认。结果说明了亮氨酸拉链基序的适应性和灵活性,这些特性可能有助于通过卷曲螺旋结构域设计特定的蛋白质组装体。