Zhangjie Wang, Julius Benicky, Pritha Mukherjee, Justin Laing, Yongmei Xu, Vijayakanth Pagadala, Shuangni Wu, Joseph A Hippensteel, Radoslav Goldman, Jian Liu
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引用次数: 0
摘要
硫酸乙酰肝素6-巯基内酯酶(SULFs)从硫酸乙酰肝素多糖链中去除6- o -巯基。磺胺砜改变硫酸肝素的功能,促进癌症、器官发育和内皮炎症反应的发展。然而,目前还不可能直接测量人类和小鼠血浆中硫代硫化硫化合物的活性。在这里,我们报告了一种液相色谱-串联质谱(LS-MS/MS)检测方法来测量SULFs的活性。该方法使用结构均匀的硫酸肝素十二糖(12-mer),其中葡萄糖醛酸和伊杜醛酸残基用13C-和2h原子标记。的12-mers desulfated SULFs是受到与肝素裂解酶降解,产生二糖,这是紧随其后的是质/女士。通过LC-MS/MS定量的两种特异性双糖ΔIIIS和ΔIVS的量,以高灵敏度和特异性报告了SULFs的活性。该方法可用于条件细胞培养基和小鼠血浆的活性测定。我们的研究结果为描述SULFs在生物过程中的许多作用提供了一个重要的新工具。
Editor's Choice Development of a method to measure the activity of heparan sulfate 6-endosulfatase for biological research.
Heparan sulfate 6-endosulfatases (SULFs) remove 6-O-sulfo groups from heparan sulfate polysaccharide chains. SULFs modify the functions of heparan sulfate and contribute to the development of cancers, organ development and endothelial inflammatory responses. However, direct measurement of the activity of SULFs from human and mouse plasma is not currently possible. Here, we report a liquid chromatography coupled with tandem mass spectrometry (LS-MS/MS) assay to measure the activity of SULFs. The method uses a structurally homogeneous heparan sulfate dodecasaccharide (12-mer) in which the glucuronic and iduronic acid residues are labeled with both 13C- and 2H-atoms. The 12-mers desulfated by the SULFs is subjected to degradation with heparin lyases to yield disaccharides, which is followed by LC-MS/MS. The amount of two specific disaccharides, ΔIIIS and ΔIVS, quantified by LC-MS/MS reports the activity of the SULFs with high sensitivity and specificity. This method allows for the determination of the activity from conditioned cell media and mouse plasma. Our findings offer an essential novel tool to delineate many roles of SULFs in biological processes.
期刊介绍:
Established as the leading journal in the field, Glycobiology provides a unique forum dedicated to research into the biological functions of glycans, including glycoproteins, glycolipids, proteoglycans and free oligosaccharides, and on proteins that specifically interact with glycans (including lectins, glycosyltransferases, and glycosidases).
Glycobiology is essential reading for researchers in biomedicine, basic science, and the biotechnology industries. By providing a single forum, the journal aims to improve communication between glycobiologists working in different disciplines and to increase the overall visibility of the field.