首页> 美国卫生研究院文献>Proceedings of the Japan Academy. Series B Physical and Biological Sciences >Analysis of behavior of sodiated sugar hemiacetals under low-energy collision-induced dissociation conditions and application to investigating mutarotation and mechanism of a glycosidase
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Analysis of behavior of sodiated sugar hemiacetals under low-energy collision-induced dissociation conditions and application to investigating mutarotation and mechanism of a glycosidase

机译:低能碰撞诱导的解离条件下糖半缩醛的行为分析及其在糖苷酶诱变和机理研究中的应用

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摘要

Analysis of anomericity is one of the most important issues in the structure elucidation of carbohydrates. Mass spectrometry (MS)-based methods are of particular interest and important to address the issue related to resolving anomericity of monosaccharide units in a glycan. However, direct analysis of hemiacetals has not been possible by MS because of the nonavailability of information regarding the gas-phase behavior of such ion species. We addressed this issue by using stage-discriminated energy-resolved mass spectrometry (ERMS) at the stages of MSn and MSn+1 and showed that such analysis can be made. This was achieved by proving that individual anomers can be identified and that the equilibrium of sodium adducted ion species of α- and β-anomers can be negated in the gas phase under collision-induced dissociation (CID) conditions. On the basis of these results, we could 1) observe the mutarotation of lactose and 2) speculate the hydrolysis mechanism of endo-glycosylceramidase by using mass spectrometry.
机译:异构性分析是碳水化合物结构阐明中最重要的问题之一。基于质谱(MS)的方法特别有意义,对于解决与解决聚糖中单糖单元的异头异构性有关的问题也很重要。但是,由于无法获得有关此类离子物质气相行为的信息,MS无法直接分析半缩醛。我们通过在MS n 和MS n +1 阶段使用阶段分辨能量分辨质谱(ERMS)解决了这个问题,表明可以进行这种分析。这是通过证明可以识别单个端基异构体,并且在碰撞诱导解离(CID)条件下,可以在气相中否定α-和β-端基异构体的钠加成离子种类的平衡。根据这些结果,我们可以1)观察乳糖的诱变和2)通过质谱分析推测内切糖基神经酰胺酶的水解机理。

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