Oxley D, Munro S L, Craik D J, Bacic A
Plant Cell Biology Research Centre, School of Botany, University of Melbourne, Parkville, Victoria 3052, Australia.
J Biochem. 1998 May;123(5):978-83. doi: 10.1093/oxfordjournals.jbchem.a022033.
S-RNases are the stylar products of the self-incompatibility (S)-locus in solanaceous plants (including Nicotiana alata), and as such, are involved in the prevention of self-pollination. All cDNA sequences of S-RNase products of functional S-alleles contain potential N-glycosylation sites, with one site being conserved in all cases, suggesting that N-glycosylation is important in self-incompatibility. In this study, we report on the structure and localization of the N-glycans on the S7-allele RNase of N. alata. A total of nine N-glycans, belonging to the high-mannose- and xylosylated hybrid-classes, were identified and characterized by a combination of electrospray-ionization mass-spectrometry (ESI-MS), 1H-NMR spectroscopy, and methylation analyses. The glycosylation pattern of individual glycosylation sites was determined by ESI-MS of the glycans released from isolated chymotryptic glycopeptides. All three N-glycosylation sites showed microheterogeneity and each had a unique complement of N-glycans. The N-glycosylation pattern of the S7-RNase is significantly different to those of the S1- and S2-RNases.
S-RNases是茄科植物(包括白花烟草)中自交不亲和性(S)位点的花柱产物,因此参与防止自花授粉。功能性S等位基因的S-RNase产物的所有cDNA序列都含有潜在的N-糖基化位点,在所有情况下都有一个位点是保守的,这表明N-糖基化在自交不亲和性中很重要。在本研究中,我们报道了白花烟草S7等位基因RNase上N-聚糖的结构和定位。通过电喷雾电离质谱(ESI-MS)、1H-NMR光谱和甲基化分析相结合的方法,共鉴定和表征了9种属于高甘露糖型和木糖基化杂合型的N-聚糖。通过对从分离的胰凝乳蛋白酶糖肽释放的聚糖进行ESI-MS,确定了各个糖基化位点的糖基化模式。所有三个N-糖基化位点都表现出微异质性,每个位点都有独特的N-聚糖互补。S7-RNase的N-糖基化模式与S1-和S2-RNases的显著不同。