Suppr超能文献

评估由于不同类型的唾液酸连接而导致的糖缀合物异构体在完整糖蛋白、糖肽和聚糖水平上的离子淌度差异。

Evaluation of ion mobility for the separation of glycoconjugate isomers due to different types of sialic acid linkage, at the intact glycoprotein, glycopeptide and glycan level.

机构信息

Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Diagonal 645, 08028 Barcelona, Spain.

Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Diagonal 645, 08028 Barcelona, Spain.

出版信息

J Proteomics. 2018 Feb 20;173:22-31. doi: 10.1016/j.jprot.2017.11.020. Epub 2017 Nov 29.

Abstract

UNLABELLED

The study of protein glycosylation can be regarded as an intricate but very important task, making glycomics one of the most challenging and interesting, albeit under-researched, type of "omics" science. Complexity escalates remarkably when considering that carbohydrates can form severely branched structures with many different constituents, which often leads to the formation of multiple isomers. In this regard, ion mobility (IM) spectrometry has recently demonstrated its power for the separation of isomeric compounds. In the present work, the potential of traveling wave IM (TWIMS) for the separation of isomeric glycoconjugates was evaluated, using mouse transferrin (mTf) as model glycoprotein. Particularly, we aim to assess the performance of this platform for the separation of isomeric glycoconjugates due to the type of sialic acid linkage, at the intact glycoprotein, glycopeptide and glycan level. Straightforward separation of isomers was achieved with the analysis of released glycans, as opposed to the glycopeptides which showed a more complex pattern. Finally, the developed methodology was applied to serum samples of mice, to investigate its robustness when analyzing real complex samples.

BIOLOGICAL SIGNIFICANCE

Ion mobility mass spectrometry is a promising analytical technique for the separation of glycoconjugate isomers due to type of sialic acid linkage. The impact of such a small modification in the glycan structure is more evident in smaller analytes, reason why the analysis of free glycans was easier compared to the intact protein or the glycopeptides. The established methodology could be regarded as starting point in the separation of highly decorated glycoconjugates. This is an important topic nowadays, as differences in the abundance of some glycan isomers could be the key for the early diagnosis, control or differentiation of certain diseases, such as inflammation or cancer.

摘要

未加标签

蛋白质糖基化的研究可以被视为一项复杂但非常重要的任务,使得糖组学成为最具挑战性和趣味性的“组学”科学之一,尽管研究还不够充分。当考虑到碳水化合物可以形成具有许多不同成分的严重分支结构,这往往会导致多种异构体的形成时,复杂性会显著增加。在这方面,离子淌度(IM)谱最近已经证明了其用于分离异构体化合物的能力。在本工作中,使用小鼠转铁蛋白(mTf)作为模型糖蛋白,评估了行进波 IM(TWIMS)用于分离异构体糖缀合物的潜力。特别地,我们旨在评估该平台在分离由于唾液酸键类型的异构体糖缀合物方面的性能,即在完整糖蛋白、糖肽和聚糖水平上。通过分析释放的聚糖可以实现异构体的简单分离,而糖肽则显示出更复杂的模式。最后,将开发的方法应用于小鼠血清样品,以研究其在分析真实复杂样品时的稳健性。

生物学意义

离子淌度质谱是一种有前途的分析技术,可用于分离由于唾液酸键类型的糖缀合物异构体。这种糖链结构的微小修饰的影响在较小的分析物中更为明显,因此与完整蛋白质或糖肽相比,游离聚糖的分析更容易。所建立的方法可以被视为高度修饰的糖缀合物分离的起点。这是当今一个重要的话题,因为某些聚糖异构体的丰度差异可能是早期诊断、控制或区分某些疾病(如炎症或癌症)的关键。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验