首页> 外文期刊>Journal of Agricultural and Food Chemistry >Changes of S-Allylmercaptocysteine and gamma-Glutamyl-S-allylmercaptocysteine Contents and Their Putative Production Mechanisms in Garlic Extract during the Aging Process
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Changes of S-Allylmercaptocysteine and gamma-Glutamyl-S-allylmercaptocysteine Contents and Their Putative Production Mechanisms in Garlic Extract during the Aging Process

机译:衰老过程中大蒜提取物中S-烯丙基汞合脉内酯和γ-谷氨酰胺-S-烯丙基烯酮含量的变化及其推定的蒜泥提取物生产机制

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gamma-Glutamyl-S-allylmercaptocysteine (GSAMC), a putative precursor compound of S-allylmercaptocysteine (SAMC), was isolated and identified from aged garlic extract (AGE). We analyzed the change of their contents in AGE during the aging process, chronologically from 1 to 22 months. The formation of these compounds occurred mostly during the early stage of the aging period: the SAMC content reached a maximum at approximately 4 months, whereas the GSAMC content reached a maximum at 1 month and then decreased during the subsequent aging period. To assess the possible relationship between the change of the two compounds during the aging process, we set up the model reactions with the hypothesis that GSAMC is produced from gamma-glutamyl-S-allylcysteine (GSAC)/gamma-gultamyl-S-1-propenylcysteine (GS1PC) and that SAMC is produced from GSAMC by endogenous gamma-glutamyl transpeptidase (GGT) in garlic during the early stage of the aging process. We found that, in the model reactions, SAMC was produced from GSAMC by the garlic protein fraction having GGT activity and its production was suppressed by a GGT inhibitor. Furthermore, the production of GSAMC from allicin and GSAC/GS1PC was found in another model reaction. The reaction between allicin and GS1PC was faster than that between allicin and GSAC and, thus, may be involved in the production of GSAMC in the early stage of the aging process.
机译:γ-谷氨酰胺-S-烯丙基汞合金(GSAMC),分离出调用的S-烯丙基汞(SAMC)的推定前体化合物(SAMC),并从老年大蒜提取物(年龄)中鉴定。我们在老龄化过程中分析了年龄的内容的变化,从1到22个月开始时间为期。这些化合物的形成主要发生在老化时期的早期期间:SAMC含量在大约4个月内达到最大值,而GSAMC含量在1个月内达到最大值,然后在随后的老化期间降低。为了评估在老化过程中两种化合物的变化之间的可能关系,我们将模型反应与GMAMA-glutamyl-S-烯丙基(GSAC)/γ-甘氨酸-S-1-产生的假设进行了模型反应。在老化过程的早期阶段,通过在大蒜中通过GMAMA-谷氨酸转琥珀酶(GGT)在GAMAMC中由GSAMC制备丙烯基琥珀酰琥珀酰琥珀酰氨基氨基(GS1PC)。我们发现,在模型反应中,通过GGT活性的大蒜蛋白级分由GSAMC产生SAMC,并通过GGT抑制剂抑制其产生。此外,在另一种模型反应中发现了来自含有丙酸和GSAC / GS1PC的GSAMC的产生。大蛋白和GS1PC之间的反应比含有大肠杆菌和GSAC之间的反应更快,因此,在老化过程的早期阶段,可以参与GSAMC的生产。

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