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MetIDB: A Publicly Accessible Database of Predicted and Experimental ~1H NMR Spectra of Flavonoids

机译:MetIDB:类黄酮的预测和实验〜1H NMR光谱的可公开访问的数据库

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摘要

Identification of natural compounds, especially secondary metabolites, has been hampered by the lack of easy to use and accessible reference databases. Nuclear magnetic resonance (NMR) spectroscopy is the most selective technique for identification of unknown metabolites. High quality ~1H NMR (proton nuclear magnetic resonance) spectra combined with elemental composition obtained from mass spectrometry (MS) are essential for the identification process. Here, we present MetIDB, a reference database of experimental and predicted ~1H NMR spectra of 6000 flavonoids. By incorporating the stereochemistry, intramolecular interactions, and solvent effects into the prediction model, chemical shifts and couplings were predicted with great accuracy. A user-friendly web-based interface for MetIDB has been established providing various interfaces to the data and data-mining possibilities. For each compound, additional information is available comprising compound annotation, a ~1H NMR spectrum, 2D and 3D structure with correct stereochemistry, and monoisotopic mass as well as links to other web resources. The combination of chemical formula and ~1H NMR chemical shifts proved to be very efficient in metabolite identification, especially for isobaric compounds. Using this database, the process of flavonoid identification can then be significantly shortened by avoiding repetitive elucidation of already described compounds.
机译:由于缺乏易于使用和访问的参考数据库,天然化合物(尤其是次级代谢产物)的鉴定受到阻碍。核磁共振波谱学是鉴定未知代谢物的最有选择性的技术。高质量〜1H NMR(质子核磁共振)光谱与从质谱法(MS)获得的元素组成相结合对于鉴定过程至关重要。在这里,我们介绍MetIDB,这是6000种类黄酮的实验和预测〜1H NMR光谱的参考数据库。通过将立体化学,分子内相互作用和溶剂效应纳入预测模型,可以非常准确地预测化学位移和偶联。已经建立了用于MetIDB的用户友好的基于Web的界面,为数据和数据挖掘提供了各种界面。对于每种化合物,都可以获得其他信息,包括化合物注释,〜1H NMR光谱,具有正确立体化学的2D和3D结构以及单同位素质量以及与其他网络资源的链接。化学式和〜1H NMR化学位移的组合被证明在代谢物鉴定中非常有效,特别是对于同量异位化合物。使用该数据库,可以避免重复描述已描述的化合物,从而大大缩短类黄酮的鉴定过程。

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