Amoresano A, Brancaccio A, Andolfo A, Perduca M, Monaco H L, Marino G
International Mass Spectrometry Facilities Centre, Naples, Italy.
Eur J Biochem. 1999 Aug;263(3):849-58. doi: 10.1046/j.1432-1327.1999.00570.x.
The carbohydrate chains of nine isoforms of chicken egg-white riboflavin-binding protein (RfBP) and six isoforms each of quail egg-white and yolk RfBP have been structurally characterized. The two N-glycosylation sites, Asn36 and Asn147, of the most abundant isoform of each of the three proteins were analyzed in further detail leading to the identification of different glycosylation patterns. In both chicken and quail egg-white RfBP the carbohydrates attached to position 36 had a lower degree of branching and, in the case of the quail protein, this site was only partially glycosylated. A very heterogeneous mixture of complex structures was characteristic of the other glycosylation site. Analysis of the two sites in quail yolk RfBP confirmed this result which agrees with what has been established for hen yolk RfBP. The presence in the three proteins of a highly heterogeneous mixture of differently branched glycans suggests that the differences in isoelectric points, which is a peculiarity of the different isoforms, are probably indeed due to differences in carbohydrate structure.
已对鸡卵清核黄素结合蛋白(RfBP)的9种同工型以及鹌鹑卵清和卵黄RfBP各6种同工型的碳水化合物链进行了结构表征。对这三种蛋白质中每种最丰富的同工型的两个N-糖基化位点Asn36和Asn147进行了更详细的分析,从而确定了不同的糖基化模式。在鸡和鹌鹑卵清RfBP中,连接在36位的碳水化合物分支程度较低,就鹌鹑蛋白而言,该位点仅部分糖基化。另一个糖基化位点的特征是结构非常复杂的异质混合物。对鹌鹑卵黄RfBP中这两个位点的分析证实了这一结果,这与已确定的母鸡卵黄RfBP的结果一致。这三种蛋白质中存在高度异质的不同分支聚糖混合物,这表明不同同工型所特有的等电点差异可能确实是由于碳水化合物结构的差异所致。