College of Biosystems Engineering and Food Science, Zhejiang Key Laboratory for Agro-Food Processing, Fuli Institute of Food Science and Zhejiang R & D Center for Food Technology and Equipment, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Center for Biotechnology & Interdisciplinary Studies and Department of Chemistry & Chemical Biology, Rensselaer Polytechnic Institute, Biotechnology Center 4005, Troy, NY 12180, USA.
Glycobiology. 2019 Oct 21;29(11):755-764. doi: 10.1093/glycob/cwz057.
Fucosylated chondroitin sulfates (FCSs) from sea cucumbers have repetitive structures that exhibit minor structural differences based on the organism from which they are recovered. A detailed characterization of FCSs and their derivatives is important to establish their structure-activity relationship in the development of new anticoagulant drugs. In the current study, online hydrophilic interaction chromatography-Fourier transform mass spectrometry (FTMS) was applied to analyze the FCS oligosaccharides generated by selective degradation from four species of sea cucumbers, Isostichopus badionotus, Pearsonothuria graeffei, Holothuria mexicana and Acaudina molpadioides. These depolymerized FCS fragments were quantified and compared using the glycomics software package, GlycReSoft. The quantified fragments mainly had trisaccharide-repeating compositions and showed significant differences in fucosylation (including its sulfation) among different species of sea cucumbers. Detailed analysis of FTMS ion peaks and top-down nuclear magnetic resonance spectroscopy of native FCS polysaccharides verified the accuracy of this method. Thus, a new structural model for FCS chains from these different sea cucumbers was defined. This bottom-up approach provides rich detailed structural analysis and provides quantitative information with high accuracy and reproducibility and should be suitable for the quality control in FCSs as well as their oligosaccharides.
岩沙海葵糖醛酸聚糖(FCSs)具有重复结构,根据其来源的生物体,其结构略有差异。对 FCS 及其衍生物进行详细的表征对于建立其在新型抗凝药物开发中的结构-活性关系非常重要。在本研究中,在线亲水相互作用色谱-傅里叶变换质谱(FTMS)用于分析由四种海参,糙海参、糙海参、墨西哥海参和紫海参选择性降解产生的 FCS 低聚糖。使用糖组学软件包 GlycReSoft 对这些解聚的 FCS 片段进行定量和比较。定量的片段主要具有三糖重复组成,并且在不同种海参之间在岩藻糖基化(包括其硫酸化)方面表现出显著差异。FTMS 离子峰的详细分析和天然 FCS 多糖的自上而下核磁共振光谱验证了该方法的准确性。因此,为这些不同海参的 FCS 链定义了一个新的结构模型。这种自下而上的方法提供了丰富的详细结构分析,并提供了高精度和可重复性的定量信息,应该适合 FCS 及其低聚糖的质量控制。