Schindler Baptiste, Barnes Loïc, Renois Gina, Gray Christopher, Chambert Stéphane, Fort Sébastien, Flitsch Sabine, Loison Claire, Allouche Abdul-Rahman, Compagnon Isabelle
Université de Lyon, F-69622, Lyon, France.
Université Lyon 1, Villeurbanne, France.
Nat Commun. 2017 Oct 17;8(1):973. doi: 10.1038/s41467-017-01179-y.
Deciphering the carbohydrate alphabet is problematic due to its unique complexity among biomolecules. Strikingly, routine sequencing technologies-which are available for proteins and DNA and have revolutionised biology-do not exist for carbohydrates. This lack of structural tools is identified as a crucial bottleneck, limiting the full development of glycosciences and their considerable potential impact for the society. In this context, establishing generic carbohydrate sequencing methods is both a major scientific challenge and a strategic priority. Here we show that a hybrid analytical approach integrating molecular spectroscopy with mass spectrometry provides an adequate metric to resolve carbohydrate isomerisms, i.e the monosaccharide content, anomeric configuration, regiochemistry and stereochemistry of the glycosidic linkage. On the basis of the spectroscopic discrimination of MS fragments, we report the unexpected demonstration of the anomeric memory of the glycosidic bond upon fragmentation. This remarkable property is applied to de novo sequencing of underivatized oligosaccharides.Establishing generic carbohydrate sequencing methods is both a major scientific challenge and a strategic priority. Here the authors show a hybrid analytical approach integrating molecular spectroscopy and mass spectrometry to resolve carbohydrate isomerism, anomeric configuration, regiochemistry and stereochemistry.
由于碳水化合物在生物分子中具有独特的复杂性,破解碳水化合物“字母表”颇具难度。引人注目的是,蛋白质和DNA可用的常规测序技术彻底改变了生物学,但碳水化合物却没有这样的技术。这种结构分析工具的缺失被视为一个关键瓶颈,限制了糖科学的全面发展及其对社会的巨大潜在影响。在此背景下,建立通用的碳水化合物测序方法既是一项重大科学挑战,也是一项战略重点。我们在此表明,一种将分子光谱与质谱相结合的混合分析方法提供了一种合适的度量标准,以解析碳水化合物的异构体,即糖苷键的单糖含量、异头构型、区域化学和立体化学。基于对质谱碎片的光谱鉴别,我们报告了糖苷键在断裂时异头记忆的意外证明。这一显著特性被应用于未衍生化寡糖的从头测序。建立通用的碳水化合物测序方法既是一项重大科学挑战,也是一项战略重点。在此,作者展示了一种将分子光谱和质谱相结合的混合分析方法,以解析碳水化合物的异构现象、异头构型、区域化学和立体化学。