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Preparation and characterization of acid hydrolysis products of the tomato glycoalkaloid alpha-tomatine

机译:番茄生物碱α-番茄碱酸水解产物的制备与表征

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As part of an effort to define the biological roles of carbohydrate groups of the tomato glycoalkaloid alpha-tomatine in plants and animals, experiments were carried out to optimize the acid hydrolysis of the tetrasaccharide side chain of alpha-tomatine to products with three, two, one, and zero sugar groups. This was accomplished by following the time course for hydrolysis in 1 N HCl at 100 degrees C, isolating the hydrolysis products by chromatography on an aluminum oxide column, and determining the number and nature of hydrolysis products, including free sugars, with the aid of thin-layer chromatography and gas chromatography/mass spectrometry of alditol acetate sugar derivatives. The results show that a 20-min hydrolysis time appears useful for the formation of a mixture of the monosaccharide delta-tomatine, the disaccharide gamma-tomatine, and the trisaccharide beta(1)-tomatine. Efforts to isolate the other possible trisaccharide, beta(2)-tomatine, were unsuccessful, apparently because xylose is degraded during the hydrolysis. A 70-min exposure achieved complete hydrolysis of alpha-tomatine to the aglycon tomatidine. alpha-Tomatine was stable to hydrolysis at 37 degrees C, suggesting that it may also be stable to comparable acid conditions of the gut of insects, animals, and humans. The approach used should be generally useful for preparing hydrolysis products of glycoalkaloids and other glycosides such as saponins to facilitate assessing the role of the carbohydrate groups of these compounds in host-plant resistance, nutrition, and microbiology. [References: 36]
机译:为了确定番茄糖生物碱α-番茄碱的碳水化合物基团在植物和动物中的生物学作用,进行了一些实验,以优化α-番茄碱的四糖侧链酸水解为三种,两种,一,零糖组。这是通过遵循在100°C下于1 N HCl中水解的时间过程,在氧化铝柱上通过色谱分离水解产物,并借助稀浆确定水解产物(包括游离糖)的数量和性质来完成的。醛糖醇乙酸糖衍生物的三层色谱法和气相色谱/质谱法。结果表明20分钟的水解时间似乎对形成单糖δ-番茄碱,二糖γ-番茄碱和三糖β(1)-番茄碱的混合物有用。分离其他可能的三糖,β(2)-番茄碱的努力没有成功,显然是因为木糖在水解过程中被降解。暴露70分钟可将α-番茄碱完全水解为糖苷配基番茄碱。 α-托马汀在37摄氏度的温度下稳定水解,表明它在昆虫,动物和人类肠道的类似酸性条件下也可能稳定。所使用的方法通常应可用于制备糖类生物碱和其他糖苷(如皂苷)的水解产物,以帮助评估这些化合物的碳水化合物基团在宿主植物抗性,营养和微生物学中的作用。 [参考:36]

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