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大麦中反式 -2-壬烯醛的酶促氢化作用

Enzymatic hydrogenation of trans-2-nonenal in barley.

作者信息

Hambraeus Gustav, Nyberg Nils

机构信息

Carlsberg Research Center, Gamle Carlsberg Vej 10, DK-2500 Copenhagen, Denmark.

出版信息

J Agric Food Chem. 2005 Nov 2;53(22):8714-21. doi: 10.1021/jf050696l.

Abstract

Conversion of undesirable, taste-active compounds is crucial for using barley as a suitable raw material for beer production. Here, ALH1, a barley alkenal hydrogenase enzyme that reduced the alpha,beta-unsaturated double bond of aldehydes and ketones, was found to convert trans-2-nonenal (T2N), a major contributor to the cardboard-like flavor of aged beer. Although the physiological function of ALH1 in barley development remains elusive, it exhibited high specificity with NADPH as a cofactor in the conversion of several oxylipins-including T2N, trans-2-hexenal, traumatin, and 1-octen-3-one. ALH1 action represents a previously unknown mechanism for T2N conversion in barley. Additional experimental results resolved the genomic sequence for barley ALH1, as well as the identification of a paralog gene encoding ALH2. Interestingly, T2N was not converted by purified, recombinant ALH2. The possibility to enhance ALH1 activity in planta is discussed--not only with respect to the physiological consequences thereof--but also in relation to improved beer quality.

摘要

将不良的、具有味觉活性的化合物进行转化,对于将大麦用作啤酒生产的合适原料至关重要。在此,发现大麦烯醛氢化酶ALH1可还原醛和酮的α,β-不饱和双键,它能转化反式-2-壬烯醛(T2N),T2N是陈酿啤酒中类似纸板风味的主要贡献者。尽管ALH1在大麦发育中的生理功能仍不清楚,但它在几种氧化脂质(包括T2N、反式-2-己烯醛、创伤激素和1-辛烯-3-酮)的转化中以NADPH作为辅因子表现出高特异性。ALH1的作用代表了大麦中T2N转化的一种前所未知的机制。额外的实验结果解析了大麦ALH1的基因组序列,以及鉴定了一个编码ALH2的旁系同源基因。有趣的是,纯化的重组ALH2不能转化T2N。文中讨论了在植物中增强ALH1活性的可能性——不仅涉及其生理后果——还涉及改善啤酒质量。

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