Huang Yu, Mao Yang, Zong Chengli, Lin Cheng, Boons Geert-Jan, Zaia Joseph
Department of Biochemistry, Boston University Medical Campus , 670 Albany Street, Boston, Massachusetts 02118, United States.
Anal Chem. 2015 Jan 6;87(1):592-600. doi: 10.1021/ac503248k. Epub 2014 Dec 22.
Heparan sulfate (HS) 3-O-sulfation determines the binding specificity of HS/heparin for antithrombin III and plays a key role in herpes simplex virus (HSV) infection. However, the low natural abundance of HS 3-O-sulfation poses a serious challenge for functional studies other than the two cases mentioned above. By contrast, multiple distinct isoforms of 3-O-sulfotranserases exist in mammals (up to seven isoenzymes). Here we describe a novel peeling reaction that specifically degrades HS chains with 3-O-sulfated glucosamine at the reducing-end. When HS/heparin is enzymatically depolymerized for compositional analysis, 3-O-sulfated glucosamine at the reducing ends appears to be susceptible to degradation under mildly basic conditions. We propose a 3-O-desulfation initiated peeling reaction mechanism based on the intermediate and side-reaction products observed. Our discovery calls for the re-evaluation of the natural abundance and functions of HS 3-O-sulfation by taking into consideration the negative impact of this novel peeling reaction.
硫酸乙酰肝素(HS)的3 - O - 硫酸化决定了HS/肝素与抗凝血酶III的结合特异性,并在单纯疱疹病毒(HSV)感染中起关键作用。然而,HS 3 - O - 硫酸化的天然丰度较低,这给上述两种情况以外的功能研究带来了严峻挑战。相比之下,哺乳动物中存在多种不同的3 - O - 磺基转移酶同工型(多达七种同工酶)。在此,我们描述了一种新型的剥离反应,该反应能特异性降解还原端带有3 - O - 硫酸化葡糖胺的HS链。当HS/肝素经酶解聚用于成分分析时,还原端的3 - O - 硫酸化葡糖胺在弱碱性条件下似乎易于降解。基于观察到的中间体和副反应产物,我们提出了一种基于3 - O - 去硫酸化引发的剥离反应机制。我们的发现要求在考虑这种新型剥离反应负面影响的情况下,重新评估HS 3 - O - 硫酸化的天然丰度和功能。