Oxley D, Munro S L, Craik D J, Bacic A
Plant Cell Biology Research Centre, School of Botany, University of Melbourne, Parkville, Victoria, Australia.
Glycobiology. 1996 Sep;6(6):611-8. doi: 10.1093/glycob/6.6.611.
Self-incompatibility is a mechanism developed by many plants to prevent inbreeding. The products of the self-incompatibility (S)-locus in the styles of solanaceous plants are a series of glycoproteins with ribonuclease activity. In this study, we report on the N-glycans from the stylar self-incompatibility S3- and S6-ribonucleases of Nicotiana alata, which were enzymically released and fractionated by high-pH anion-exchange HPLC. A total of 14 N-glycans were identified and characterized by a combination of electrospray-ionization mass-spectrometry, 1H-NMR spectros-copy, chemical degradation, and methylation analyses. This patterns of N-glycosylation is much more complex than that previously found on the N.alata S1- and S2-RNases, each of which contained only four N-glycans.
自交不亲和性是许多植物为防止近亲繁殖而形成的一种机制。茄科植物花柱中自交不亲和性(S)位点的产物是一系列具有核糖核酸酶活性的糖蛋白。在本研究中,我们报道了来自烟草花柱自交不亲和性S3和S6核糖核酸酶的N-聚糖,这些N-聚糖通过高pH值阴离子交换高效液相色谱法进行酶解和分离。通过电喷雾电离质谱、1H-NMR光谱、化学降解和甲基化分析相结合的方法,共鉴定并表征了14种N-聚糖。这种N-糖基化模式比之前在烟草S1和S2核糖核酸酶上发现的模式要复杂得多,后者每种仅含有四种N-聚糖。