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首次在啤酒花(Humulus lupulus L.)中发现 3-巯基戊烷-1-醇的半胱氨酸和谷胱甘肽缀合物。

First Evidence of the Cysteine and Glutathione Conjugates of 3-Sulfanylpentan-1-ol in Hop ( Humulus lupulus L.).

机构信息

Unité de Brasserie et des Industries Alimentaires, Earth and Life Institute (ELIM), Faculté des Bioingénieurs , Université catholique de Louvain , Croix du Sud 2 , Box L7.05.07, B-1348 Louvain-la-Neuve , Belgium.

Institute of Condensed Matter and Nanosciences (IMCN) , Université catholique de Louvain , Place Louis Pasteur 1 , Box L4.01.02, B-1348 Louvain-la-Neuve , Belgium.

出版信息

J Agric Food Chem. 2019 Apr 10;67(14):4002-4010. doi: 10.1021/acs.jafc.9b00225. Epub 2019 Mar 28.

Abstract

After evidence of the cysteinylated precursors of 3-sulfanyl-4-methylpentan-1-ol (Cys-26) and 3-sulfanylhexan-1-ol (Cys-23) in hop, S-glutathione precursors (G-23 and G-26) were recently discovered in different dual-purpose hop varieties. Because free 3-sulfanylpentan-1-ol (21) has also been detected in hop, the present work aimed to identify its potential precursors. The compounds S-3-(1-hydroxylpentyl)cysteine (Cys-21) and S-3-(1-hydroxylpentyl)glutathione (G-21) were first synthesized and characterized by nuclear magnetic resonance and high-resolution mass spectrometry. High-performance liquid chromatography-positive electrospray ionization-tandem mass spectrometry evidenced both for the first time in hop. Both S conjugates were further quantitated in six hop samples: the well-known Saaz, Amarillo, Citra, Hallertau Blanc, Nelson Sauvin, and Polaris. Similar to G-23, G-21 appeared ubiquitous to all varieties. Of all of the samples investigated here, Citra (harvest 2017) emerged as the richest in G-21, with 18 mg/kg of dry matter. Cys-21 was found in all samples at a much lower concentration (up to 0.2 mg/kg of dry matter in Polaris, harvest 2017). Model media spiked with Cys-21 or G-21 allowed for the confirmation that brewing yeast is able to release free compound 21 from them.

摘要

在啤酒花中发现了 3-巯基-4-甲基戊醇(Cys-26)和 3-巯基己醇(Cys-23)的半胱氨酸前体的证据后,最近在不同的两用啤酒花品种中发现了 S-谷胱甘肽前体(G-23 和 G-26)。由于在啤酒花中也检测到了游离的 3-巯基戊醇(21),本工作旨在鉴定其潜在的前体。首次合成并通过核磁共振和高分辨率质谱对化合物 S-3-(1-羟基戊基)半胱氨酸(Cys-21)和 S-3-(1-羟基戊基)谷胱甘肽(G-21)进行了表征。高效液相色谱-正电喷雾串联质谱法首次在啤酒花中证明了这两种 S 缀合物的存在。这两种 S 缀合物在六个啤酒花样品中进一步进行了定量分析:著名的 Saaz、Amarillo、Citra、Hallertau Blanc、Nelson Sauvin 和 Polaris。与 G-23 相似,G-21 似乎普遍存在于所有品种中。在所有研究的样品中,Citra(2017 年收获)是 G-21 最丰富的,干物质含量为 18 毫克/千克。在所有样品中都发现了低浓度的 Cys-21(在 2017 年收获的 Polaris 中含量低至 0.2 毫克/千克的干物质)。用 Cys-21 或 G-21 加标模型培养基可证实酿造酵母能够从它们中释放出游离的 21 号化合物。

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