Department of Condensed Matter, National Institute for Research and Development in Electrochemistry and Condensed Matter, Timisoara 300224, Romania.
SYNLAB Holding Deutschland GmbH, Trier 54290, Germany.
J Am Soc Mass Spectrom. 2024 Sep 4;35(9):2102-2117. doi: 10.1021/jasms.4c00159. Epub 2024 Aug 23.
Glycosaminoglycans (GAGs) are sulfated linear -glycan chains abundantly expressed in the extracellular matrix (ECM). Among GAGs, chondroitin sulfate (CS) and dermatan sulfate (DS) play important roles at the brain level, where the distribution and location of the sulfates within the CS/DS chains are responsible for numerous biological events. The diversity of the neural hybrid CS/DS expressed in the brain and the need to elucidate their structure gave rise to considerable efforts toward the development of analytical methods able to discover novel regularly and irregularly sulfated domains. In this context, we report here the introduction of ion mobility separation (IMS) mass spectrometry (MS) in brain glycosaminoglycomics. Based on IMS MS and tandem MS (MS/MS) by collision-induced dissociation (CID), we have developed a powerful approach for the screening and structural analysis of neural CS/DS and optimized and validated the method for the structural analysis of octasaccharides that were released from brain proteoglycans by β-elimination and pooled after chain depolymerization using chondroitin AC lyase. The IMS MS data revealed the separation of CS/DS octamers into mobility families based on the amount of sulfation. Among the discovered oversulfated domains, of major biological importance is the pentasulfated-[4,5-Δ-GlcAGalNAc(IdoAGalNAc)], for which the (-) nanoESI IMS CID MS/MS analysis disclosed through the presence of distinct drift times, the incidence of two isomers. Moreover, the generated fragment ions revealed an uncommon trisulfated motif and an uncommon pentasulfated motif. Hence, using IMS MS and CID MS/MS, novel brain-related CS/DS domains of atypical sulfation patterns were discovered and structurally characterized in detail.
糖胺聚糖 (GAGs) 是大量表达于细胞外基质 (ECM) 中的线性硫酸化聚糖链。在 GAGs 中,硫酸软骨素 (CS) 和硫酸皮肤素 (DS) 在大脑水平上发挥着重要作用,CS/DS 链中硫酸盐的分布和位置负责许多生物学事件。在大脑中表达的神经混合 CS/DS 的多样性以及阐明其结构的需要,促使人们做出了相当大的努力来开发能够发现新型规则和不规则硫酸化结构域的分析方法。在这种情况下,我们在这里报告了离子淌度分离 (IMS) 质谱 (MS) 在脑糖胺聚糖组学中的应用。基于 IMS-MS 和通过碰撞诱导解离 (CID) 的串联 MS (MS/MS),我们开发了一种用于筛选和结构分析神经 CS/DS 的强大方法,并对该方法进行了优化和验证,用于从脑蛋白聚糖中通过β消除释放的八聚糖的结构分析,然后使用软骨素 AC 裂解酶进行链解聚后汇集。IMS-MS 数据显示,CS/DS 八聚体根据硫酸化程度分离成淌度家族。在所发现的过硫酸化结构域中,具有主要生物学重要性的是五硫酸化-[4,5-Δ-GlcAGalNAc(IdoAGalNAc)],其 (-) 纳升电喷雾 IMS CID MS/MS 分析通过存在明显的漂移时间揭示了两种异构体的存在。此外,产生的片段离子揭示了一种不常见的三硫酸化基序和一种不常见的五硫酸化基序。因此,使用 IMS-MS 和 CID-MS/MS,发现并详细结构表征了新型与大脑相关的 CS/DS 结构域,其具有非典型的硫酸化模式。