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Assignment of 1H and 13C Nuclear Magnetic Resonances of Ganglioside GA1

机译:神经节苷脂GA1的1H和13C核磁共振的分配。

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Investigation of the structures of the gangliosides has proven to be very important in the understanding of their biological roles such as regulation of differentiation and growth of cells. We used nuclear magnetic resonance spectros-copy in order to investigate the structure of GA1. In order to do this, the assignment of spectra is a prerequisite. Since GA1 does not have polar sialic acid, the spectral overlap is severe. In order to solve this problem, we use 2D NMR spectroscopy and heteronuclear 1H/13C correlated spectroscopy in this study. Here, we report the complete assignment of the proton and the carbon spectra of the GA1 in DMSO-d6-D20 (98:2, v/v). These assignments will be useful for interpreting 1H and 13C NMR data from uncharacterized oligosaccharides and for determining the linkage position, the number of sugar rings, and the sequence of new ganglioside. Amide proton in ring ゲ shows many interring nOes and has intramolecular hydrogen bonding. This appears to be an important factor in tertiary folding of GA1. Based on this assignment, determination of three dimensional structure of GA1 will be carried out. Studies on the conformational properties of GA1 may lead to a better understanding of the molecular basis of its functions.
机译:已经证明,对神经节苷脂的结构进行研究对于理解其生物学作用(例如调节细胞的分化和生长)非常重要。为了研究GA1的结构,我们使用了核磁共振波谱。为此,必须先分配光谱。由于GA1没有极性唾液酸,光谱重叠非常严重。为了解决这个问题,我们在本研究中使用了2D NMR光谱和异核1H / 13C相关光谱。在这里,我们报告了DMSO-d6-D20(98:2,v / v)中GA1的质子和碳谱的完整分配。这些任务对于解释未表征的寡糖的1 H和13 C NMR数据以及确定键位置,糖环数和新神经节苷脂的序列将很有用。环in中的酰胺质子显示许多环nOes,并具有分子内氢键。这似乎是GA1三次折叠的重要因素。基于此分配,将确定GA1的三维结构。 GA1构象性质的研究可能会导致更好地了解其功能的分子基础。

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