Chen Ning, Yu Zhi-Hai, Xiao Xing-Guo
State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural UniversityBeijing, China.
Front Plant Sci. 2017 May 18;8:831. doi: 10.3389/fpls.2017.00831. eCollection 2017.
Betalains replace anthocyanins as color pigments in most families of Caryophyllales. Unlike anthocyanins, betalains are derived from tyrosine via three enzymatic steps: hydroxylation of L-tyrosine to L-3,4-dihydroxyphenylalanine (L-DOPA; step 1), and conversion of L-DOPA to betalamic acid (step 2), and to -DOPA (cDOPA; step 3). The principal enzymes responsible for these reactions have been elucidated at the molecular level, but their subcellular localizations have not been explored; hence, the intracellular compartments wherein betalains are biosynthesized remain unknown. Here, we report on the subcellular localization of these principal enzymes. Bioinformatic predictors and N- and C-terminal GFP tagging in transgenic tobacco, showed that CYP76AD1 which mediates both steps 1 and 3, DODA1 that catalyzes step 2, and CYP76AD6 which also mediates step 1, were similarly localized to the cytoplasm and nucleus (although the P450s were also weakly present in the endoplasmic reticulum). These two compartments were also the principal locations of cDOPA5GT. The cytoplasmic and nuclear co-localization of these key enzymes in tobacco suggests that betalains are biosynthesized in the cytoplasm and/or nucleus of betalain-containing plant cells. Elucidation of the subcellular compartmentation of betalain biosynthesis will facilitate the bioengineering of the betalain biosynthetic pathway in non-betalain-containing plants.
在石竹目大多数科中,甜菜色素取代花青素成为色素。与花青素不同,甜菜色素由酪氨酸经三步酶促反应生成:L-酪氨酸羟基化为L-3,4-二羟基苯丙氨酸(L-DOPA;第一步),L-DOPA转化为甜菜醛氨酸(第二步),以及转化为 -DOPA(cDOPA;第三步)。负责这些反应的主要酶在分子水平上已得到阐明,但其亚细胞定位尚未被探索;因此,甜菜色素生物合成的细胞内区室仍然未知。在此,我们报道这些主要酶的亚细胞定位。生物信息学预测工具以及转基因烟草中的N端和C端绿色荧光蛋白标记显示,介导第一步和第三步的CYP76AD1、催化第二步的DODA1以及也介导第一步的CYP76AD6同样定位于细胞质和细胞核(尽管细胞色素P450在内质网中也有微弱存在)。这两个区室也是cDOPA5GT的主要定位位置。这些关键酶在烟草中的细胞质和细胞核共定位表明,甜菜色素在含甜菜色素植物细胞的细胞质和/或细胞核中生物合成。阐明甜菜色素生物合成的亚细胞区室化将有助于在不含甜菜色素的植物中对甜菜色素生物合成途径进行生物工程改造。