Department of Chemistry, University of Natural Resources and Life Sciences, Vienna, Austria.
Proteomics. 2018 Feb;18(3-4). doi: 10.1002/pmic.201700330.
Release of O-glycans by reductive β-elimination has become routine in many glyco-analytical laboratories and concomitant release of N-glycans has repeatedly been observed. Revisiting this somewhat forgotten mode of N-glycan release revealed that all kinds of N-glycans including oligomannosidic and complex-type N-glycans from plants with 3-linked fucose and from mammals with or without 6-linked fucose and with sialic acid could be recovered. However, the mass spectra of the obtained products revealed very surprising facts. Even after 16 h incubation in 1 M sodium borohydride, a large part of the glycans occurred in reducing form. Moreover, about one third emerged in the form of the stable amino-functionalized 1-amino-1-deoxy-glycitol. When avoiding acidic conditions, considerable amounts of glycosylamine were observed. In addition, a compound with a reduced asparagine and de-N-acetylation products, in particular of sialylated glycans, was seen. The relative yields of the products reducing glycosylamine, reducing N-glycan, 1-amino-1-deoxy-glycitol or glycitol could be controlled by the release conditions, foremost by temperature and borohydride concentration. Thus, chemical release of N-glycans constitutes a cost-saving alternative to enzymatic hydrolysis for the preparation of precursors for the production of reference compounds for various formats of N-glycan analysis. Moreover, it allows to obtain a stable amino-functionalized glycan derivative, which can be employed to construct glycan arrays or affinity matrices.
通过还原β消除释放 O-聚糖已成为许多糖分析实验室的常规操作,并且同时释放 N-聚糖也已被多次观察到。重新审视这种有些被遗忘的 N-聚糖释放方式表明,可以回收各种 N-聚糖,包括具有 3 连接岩藻糖的植物和具有或不具有 6 连接岩藻糖和唾液酸的哺乳动物中的寡甘露糖型和复杂型 N-聚糖。然而,获得的产物的质谱揭示了非常令人惊讶的事实。即使在 1M 硼氢化钠中孵育 16 小时后,很大一部分聚糖仍处于还原形式。此外,约三分之一以稳定的氨基官能化 1-氨基-1-脱氧糖醇的形式出现。当避免酸性条件时,会观察到相当数量的糖基胺。此外,还观察到具有还原天冬酰胺和去 N-乙酰化产物的化合物,特别是唾液酸化聚糖。还原糖苷胺、还原 N-聚糖、1-氨基-1-脱氧糖醇或糖醇的产物的相对产率可以通过释放条件来控制,尤其是温度和硼氢化钠浓度。因此,与酶水解相比,N-聚糖的化学释放为制备用于各种 N-聚糖分析格式的参考化合物的前体提供了一种节省成本的替代方法。此外,它允许获得稳定的氨基官能化聚糖衍生物,可用于构建聚糖阵列或亲和基质。