Key Laboratory of Glycoconjugate Research Ministry of Public Health, Shanghai Medical College, Fudan University, Shanghai, People's Republic of China.
Glycoconj J. 2012 Aug;29(5-6):399-409. doi: 10.1007/s10719-012-9408-z. Epub 2012 Jun 12.
Human LOX-1/OLR 1 plays a key role in atherogenesis and endothelial dysfunction. The N-glycosylation of LOX-1 has been shown to affect its biological functions in vivo and modulate the pathogenesis of atherosclerosis. However, the N-glycosylation pattern of LOX-1 has not been described yet. The present study was aimed at elucidating the N-glycosylation of recombinant human LOX-1 with regard to N-glycan profile and N-glycosylation sites. Here, an approach using nonspecific protease (Pronase E) digestion followed by MALDI-QIT-TOF MS and multistage MS (MS(3)) analysis is explored to obtain site-specific N-glycosylation information of recombinant human LOX-1, in combination with glycan structure confirmation through characterizing released glycans using tandem MS. The results reveal that N-glycans structures as well as their corresponding attached site of LOX-1 can be identified simultaneously by direct MS analysis of glycopeptides from non-specific protease digestion. With this approach, one potential glycosylation site of recombinant human LOX-1 on Asn(139) is readily identified and found to carry heterogeneous complex type N-glycans. In addition, manual annotation of multistage MS data utilizing diagnostic ions, which were found to be particularly useful in defining the structure of glycopeptides and glycans was addressed for proper spectra interpretation. The findings described herein will shed new light on further research of the structure-function relationships of LOX-1 N-glycan.
人 LOX-1/OLR1 在动脉粥样硬化和血管内皮功能障碍中起关键作用。已经表明 LOX-1 的 N-糖基化会影响其体内的生物学功能,并调节动脉粥样硬化的发病机制。然而,LOX-1 的 N-糖基化模式尚未描述。本研究旨在阐明重组人 LOX-1 的 N-糖基化,包括 N-聚糖图谱和 N-糖基化位点。在这里,我们探索了一种使用非特异性蛋白酶(Pronase E)消化,然后进行 MALDI-QIT-TOF MS 和多级 MS(MS(3))分析的方法,以获得重组人 LOX-1 的特异性 N-糖基化信息,同时通过串联 MS 对释放的聚糖进行特征分析,以确认聚糖结构。结果表明,通过直接分析非特异性蛋白酶消化后的糖肽,可以同时识别 LOX-1 的 N-聚糖结构及其相应的附着位点。通过这种方法,很容易识别出重组人 LOX-1 上 Asn(139)的一个潜在糖基化位点,并发现其携带异质复合型 N-聚糖。此外,还解决了利用诊断离子对多级 MS 数据进行手动注释的问题,这些离子在确定糖肽和聚糖的结构方面特别有用,以进行正确的谱图解释。本文的研究结果将为进一步研究 LOX-1 N-聚糖的结构-功能关系提供新的思路。