Kunishima Mikiko, Yamauchi Yasuo, Mizutani Masaharu, Kuse Masaki, Takikawa Hirosato, Sugimoto Yukihiro
Graduate School of Agricultural Science, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.
Graduate School of Agricultural Science, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.
J Biol Chem. 2016 Jul 1;291(27):14023-14033. doi: 10.1074/jbc.M116.726687. Epub 2016 Apr 29.
The green odor of plants is characterized by green leaf volatiles (GLVs) composed of C6 compounds. GLVs are biosynthesized from polyunsaturated fatty acids in thylakoid membranes by a series of enzymes. A representative member of GLVs (E)-2-hexenal, known as the leaf aldehyde, has been assumed to be produced by isomerization from (Z)-3-hexenal in the biosynthesis pathway; however, the enzyme has not yet been identified. In this study, we purified the (Z)-3:(E)-2-hexenal isomerase (HI) from paprika fruits and showed that various plant species have homologous HIs. Purified HI is a homotrimeric protein of 110 kDa composed of 35-kDa subunits and shows high activity at acidic and neutral pH values. Phylogenetic analysis showed that HIs belong to the cupin superfamily, and at least three catalytic amino acids (His, Lys, Tyr) are conserved in HIs of various plant species. Enzymatic isomerization of (Z)-3-hexenal in the presence of deuterium oxide resulted in the introduction of deuterium at the C4 position of (E)-2-hexenal, and a suicide substrate 3-hexyn-1-al inhibited HI irreversibly, suggesting that the catalytic mode of HI is a keto-enol tautomerism reaction mode mediated by a catalytic His residue. The gene expression of HIs in Solanaceae plants was enhanced in specific developmental stages and by wounding treatment. Transgenic tomato plants overexpressing paprika HI accumulated (E)-2-hexenal in contrast to wild-type tomato plants mainly accumulating (Z)-3-hexenal, suggesting that HI plays a key role in the production of (E)-2-hexenal in planta.
植物的绿色气味以由C6化合物组成的绿叶挥发物(GLVs)为特征。GLVs是通过一系列酶从类囊体膜中的多不饱和脂肪酸生物合成的。GLVs的一个代表性成员(E)-2-己烯醛,即叶醛,被认为是在生物合成途径中由(Z)-3-己烯醛异构化产生的;然而,该酶尚未被鉴定出来。在本研究中,我们从辣椒果实中纯化了(Z)-3:(E)-2-己烯醛异构酶(HI),并表明各种植物物种都有同源的HI。纯化的HI是一种由35 kDa亚基组成的110 kDa同三聚体蛋白,在酸性和中性pH值下具有高活性。系统发育分析表明,HI属于cupin超家族,并且至少三个催化氨基酸(His、Lys、Tyr)在各种植物物种的HI中是保守的。在氧化氘存在下(Z)-3-己烯醛的酶促异构化导致(E)-2-己烯醛的C4位置引入氘,并且自杀底物3-己炔-1-醛不可逆地抑制HI,这表明HI的催化模式是由催化His残基介导的酮-烯醇互变异构反应模式。茄科植物中HI的基因表达在特定发育阶段和伤口处理后增强。与主要积累(Z)-3-己烯醛 的野生型番茄植株相比,过表达辣椒HI的转基因番茄植株积累了(E)-2-己烯醛,这表明HI在植物体内(E)-2-己烯醛的产生中起关键作用。