School of Food Science and Biological Engineering , Zhejiang Gongshang University , Hangzhou , Zhejiang Province 310018 , P. R. China.
J Agric Food Chem. 2019 Aug 21;67(33):9411-9422. doi: 10.1021/acs.jafc.9b03080. Epub 2019 Aug 8.
Royal jelly (RJ) is secreted by young worker bees, and it plays key roles in the development and physiological function in honeybees and can improve human health. Although there have been analyses on the glycosylation modification of RJ proteins, none of these methods have been conducted on a site-specific analysis of glycosylation from these glycoproteins. Here, a combined glycomics and glycoproteomics strategy was developed for the site-specific analysis of N-linked glycosylation heterogeneity of RJ glycoproteins. First, global characterization of the -glycome of RJ was performed using a direct infusion ion trap-sequential mass spectrometry (IT-MS) method. Second, tryptic glycopeptides were enriched and separated by hydrophilic interaction liquid chromatography-ion trap-sequential mass spectrometry (HILIC-IT-MS). A total of 50 -glycopeptides and 30 -glycans have been site-specific glycosylation profiled in major royal jelly protein 1 (MRJP1) and MRJP2 of RJ for the first time. Eighteen of the identified -glycans have been structurally characterized by IT-MS, including oligosaccharide composition, sequence, branching, and linkage. Two -glycosylation sites (N and N), 3 sites (N, N, and N), and 1 site of N were identified in MRJP1, MRJP2, and MRJP3, respectively. There were 18, 17, and 2 -glycans attached to MRJP1, MRJP2, and MRJP3, respectively. The diversity of -glycans attached to each single glycosylation site of these glycoproteins confirmed that MRJP1 and MRJP2 heterogeneity was mostly associated with their glycoform populations. Understanding the properties of the site-specific glycosylation heterogeneity of the RJ glycoproteins can be potentially useful for producing a glycoprotein with desirable pharmacokinetic and biological activity.
蜂王浆(RJ)是由年轻工蜂分泌的,它在蜜蜂的发育和生理功能中起着关键作用,并能改善人类健康。虽然已经对 RJ 蛋白的糖基化修饰进行了分析,但这些方法都没有对这些糖蛋白的糖基化进行特定位点的分析。在这里,开发了一种组合糖组学和糖蛋白质组学策略,用于对 RJ 糖蛋白的 N-连接糖基化异质性进行特定位点的分析。首先,使用直接进样离子阱-串联质谱(IT-MS)方法对 RJ 的 -聚糖组进行了全面表征。其次,通过亲水作用液相色谱-离子阱-串联质谱(HILIC-IT-MS)对胰蛋白酶糖肽进行了富集和分离。首次在蜂王浆主要 Royal jelly 蛋白 1(MRJP1)和 MRJP2 中对 50 个 -糖肽和 30 个 -聚糖进行了特定位点糖基化分析。通过 IT-MS 对鉴定出的 18 个 -聚糖进行了结构表征,包括寡糖组成、序列、分支和连接。在 MRJP1、MRJP2 和 MRJP3 中分别鉴定出 2 个、3 个和 1 个 N-糖基化位点(N、N 和 N)。MRJP1、MRJP2 和 MRJP3 分别有 18、17 和 2 个 -聚糖与之相连。这些糖蛋白中每个单一糖基化位点所连接的 -聚糖的多样性证实,MRJP1 和 MRJP2 的异质性主要与其糖型群体有关。了解 RJ 糖蛋白特定位点糖基化异质性的性质可能有助于生产具有理想药代动力学和生物学活性的糖蛋白。