首页> 外文期刊>Journal of Agricultural and Food Chemistry >Reversible and Covalent Binding of 5-(Hydroxymethyl)-2-furaIdehyde (HMF) with Lysine and Selected Amino Acids
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Reversible and Covalent Binding of 5-(Hydroxymethyl)-2-furaIdehyde (HMF) with Lysine and Selected Amino Acids

机译:5-(羟甲基)-2-氟代醛(HMF)与赖氨酸和选定氨基酸的可逆和共价结合

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摘要

The chemical reactivity of 5-(hydroxymethyl)-2-furaldehyde (HMF) with lysine, glycine, and proline was studied using isotope labeling technique. To confirm the formation of HMF adducts in glucose amino acid model systems, a useful strategy was developed in which products simultaneously possessing six glucose (HMF moiety) and any number of amino acid carbon atoms in addition to nitrogen were targeted using specifically labeled precursors such as [~(15)N_α]lysine;;2HCl, [ ~(15)N_ε]lysine·2HCl, [U-~(13)C6]lysine·2HCl, [~(13)C6]lysine·2HCl, and [U-~(13)C6]glucose in the case of lysine model system. In addition, model systems containing HMF and amino acids were also studied to confirm specific adduct formation. Complete labeling studies along with structural analysis using appropriate synthetic precursors such as HMF Schiff base adducts of piperidine and glycine have indicated that HMF generated in the glucose/amino acid model systems initially forms a Schiffbase adduct that can undergo decarboxylation through an oxazolidin-S-one intermediate and form two isomeric decarboxylated Schiff bases. Unlike the Schiff bases resulting from primary amines or amino acids such as glycine or lysine, those resulting from secondary amino acids such as proline or secondary amines such as piperidine can further undergo vinylogous Amadori rearrangement, forming N-substituted 5-(aminomethyl)furan-2-carbaldehyde derivatives.
机译:使用同位素标记技术研究了5-(羟甲基)-2-糠醛(HMF)与赖氨酸,甘氨酸和脯氨酸的化学反应性。为了确认葡萄糖氨基酸模型系统中HMF加合物的形成,开发了一种有用的策略,其中使用具有特殊标记的前驱物(如N)靶向同时具有六个葡萄糖(HMF部分)和除氮外任意数量的氨基酸碳原子的产品[〜(15)N_α]赖氨酸;; 2HCl,[〜(15)N_ε]赖氨酸·2HCl,[U-〜(13)C6]赖氨酸·2HCl,[〜(13)C6]赖氨酸·2HCl和[U -((13)C6]葡萄糖在赖氨酸模型系统的情况下。此外,还研究了含有HMF和氨基酸的模型系统,以确认特定加合物的形成。使用适当的合成前体(例如,哌啶和甘氨酸的HMF希夫碱加合物)进行的完整标记研究以及结构分析表明,在葡萄糖/氨基酸模型系统中生成的HMF最初会形成席夫碱加合物,可以通过恶唑烷素-S-一进行脱羧中间体并形成两个异构的脱羧席夫碱。与由伯胺或氨基酸(例如甘氨酸或赖氨酸)产生的席夫碱不同,由仲氨基酸(例如脯氨酸)或仲胺(例如哌啶)产生的席夫碱可以进一步发生乙烯基的Amadori重排,形成N-取代的5-(氨基甲基)呋喃- 2-甲醛的衍生物。

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