油菜素甾醇
番茄
拟南芥
生物合成
生物化学
细胞色素P450
生物
基因
代谢途径
酵母
酶
化学
植物
突变体
作者
Yukihisa Shimada,Shozo Fujioka,Narumasa Miyauchi,Masayo Kushiro,Suguru Takatsuto,T. Nomura,Takao Yokota,Yuji Kamiya,Gerard J. Bishop,Shigeo Yoshida
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2001-06-01
卷期号:126 (2): 770-779
被引量:229
摘要
Abstract Brassinosteroids (BRs) are steroidal plant hormones that are essential for growth and development. It has been proposed that BRs are synthesized via two parallel pathways, the early and late C-6 oxidation pathways according to the C-6 oxidation status. The tomato (Lycopersicon esculentum) Dwarf gene encodes a cytochrome P450 that has been shown to catalyze the C-6 oxidation of 6-deoxocastasterone to castasterone. We isolated an Arabidopsis ortholog (AtBR6ox gene) of the tomatoDwarf gene. The encoded polypeptide has characteristics of P450s and is classified into the CYP85 family. TheAtBR6ox and tomato Dwarf gene were expressed in yeast and the ability of the transformed yeast cells to metabolize 6-deoxo-BRs was tested. Metabolites were analyzed by gas chromatography-mass spectrometry. Both enzymes catalyze multiple steps in BR biosynthesis: 6-deoxoteasterone to teasterone, 3-dehydro-6-deoxoteasterone to 3-dehydroteasterone, 6-deoxotyphasterol to typhasterol, and 6-deoxocastasterone to castasterone. Our results indicate that the AtBR6ox gene and the tomatoDwarf gene encode steroid-6-oxidases and that these enzymes have a broad substrate specificity. This suggests that the BR biosynthetic pathway consists of a metabolic grid rather than two separate parallel pathways.
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