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Primary structure and chain conformation of fucoidan extracted from sea cucumber Holothuria tubulosa

机译:海参小菜蛾岩藻依聚糖的一级结构和链构象

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摘要

Knowledge of the structure of polysaccharides is essential for understanding and controlling their functional properties. In this study, fucoidan was extracted from Holothuria tubulosa, a species of sea cucumber that has recently become commercially important. The primary structure of the H. tubulosa fucoidan was clarified using a combination of enzymatic degradation, methylation analysis, and NMR, and its chain conformation was further elucidated by utilizing high performance size exclusion chromatography combined with multiple angle laser light scattering and viscometry. The fucoidan was composed of a tetrafucose repeating unit [→ 3-α-l-Fucp2(OSO)-1 → 3-α-l-Fucp2,4(OSO)-1 → 3-α-l-Fucp-1 → 3-α-l-Fucp2(OSO)-1 →]. Its sulfate content was determined to be 31.2 ± 1.6% and the weight-average molecular mass was 1567.6 ± 34.1 kDa. The molecule adapted a random coil conformation in 0.15 M NaCl solution (pH 7.4) at 25 °C, with a root-mean-square radius of 63.9 ± 1.8 nm and a hydrodynamic radius of 44.5 ± 4.5 nm. This is the first report on the chain conformation of sea cucumber fucoidan.
机译:多糖结构的知识对于理解和控制其功能性质至关重要。在这项研究中,岩藻依聚糖是从一种最近在商业上变得很重要的海参物种Holothuriatubulosa提取的。通过酶促降解,甲基化分析和NMR的结合,阐明了管状花青霉菌的一级结构,并通过使用高效尺寸排阻色谱法与多角度激光散射和粘度测定相结合,进一步阐明了其长链构象。岩藻依聚糖是由四岩藻糖重复单元[→3-α-1-Fucp2(OSO)-1→3-α-1-Fucp2,4(OSO)-1→3-α-1-Fucp-1→3组成-α-1-Fucp2(OSO)-1→]。测定其硫酸盐含量为31.2±1.6%,重均分子量为1567.6±34.1kDa。该分子在25°C的0.15 M NaCl溶液(pH 7.4)中适应了无规卷曲构象,均方根半径为63.9±1.8 nm,流体动力学半径为44.5±4.5 nm。这是关于海参岩藻依聚糖链构象的首次报道。

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