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首页> 外文期刊>Comptes Rendus Chimie >Use of heteronuclear multiple bond coherence NMR spectroscopy to monitor nitrogen metabolism in a transformed root culture of Datura stramonium
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Use of heteronuclear multiple bond coherence NMR spectroscopy to monitor nitrogen metabolism in a transformed root culture of Datura stramonium

机译:使用异核多键相干NMR光谱监测曼陀罗转化根培养物中的氮代谢

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摘要

In order to examine the factors that regulate the flux of primary metabolites into tropane alkaloids, Nuclear Magnetic Resonance spectroscopy (NMR) has been used to monitor nitrogen metabolism in transformed root cultures of Datura stramonium fed with (~15NH_4)_2SO_4 and K~15NO_3. This study employs the techique of Heteronuclear Multiple Bond Coherence (HMBC) NMR spectroscopy, which combines the advantages of both bidimensional resolution and ~1H NMR sensitivity. Moreover, the HMBC sequence allows the ~15N bound to labile protons to be observed via ~2J and/or ~3J couplings, which is very appropriate for the observation of tropane alkaloids. In transfored roots of Datura stramonium, in addition to the amino acids normally observed in monodimensional ~15N NMR, other amino acids are resolved by HMBC. Labelled peaks due to N-acetyl compounds and to uridine are identified. While these primary metabolites were also seen in cell cultures of Nicotiana plumbaginifolia, cross peaks corresponding to secondary metabolites, such as tropine, were also observed. This is the first time that such secondary products have been found by this technique.
机译:为了检查调节主要代谢物向烷烃生物碱通量的因素,已使用核磁共振波谱(NMR)监测饲喂(〜15NH_4)_2SO_4和K〜15NO_3的曼陀罗转化根培养物中的氮代谢。这项研究采用了异核多键相干(HMBC)NMR光谱技术,该技术结合了二维分辨率和〜1H NMR灵敏度的优点。此外,HMBC序列允许通过〜2J和/或〜3J偶联观察到〜15N结合到不稳定质子上,这非常适合观察托烷生物碱。在曼陀罗的转化根中,除了通常在〜15N NMR中观察到的氨基酸外,其他氨基酸也可通过HMBC解析。鉴定了由于N-乙酰基化合物和尿苷引起的标记峰。尽管这些主要代谢物也出现在Nicotiana plumbaginifolia的细胞培养物中,但也观察到了与次生代谢物(例如托品)相对应的交叉峰。这是第一次通过这种技术发现这种副产品。

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