Université de Lorraine, INRA, LAE, F54000, Nancy, France.
CIRAD, UMR AGAP, F-34398, Montpellier, France.
Plant Sci. 2020 Mar;292:110392. doi: 10.1016/j.plantsci.2019.110392. Epub 2019 Dec 31.
Furanocoumarins are defense molecules mainly described in four plant families that are phylogenetically distant. Molecular characterization of the biosynthetic pathway has been started for many years in Apiaceae and Rutaceae. The results obtained thus far in Apiaceae indicated a major role of cytochromes P450 (P450s) in the CYP71 family. In the present work, we describe the importance of another subfamily of P450s, CYP82D, identified by using a deep analysis of the citrus (Rutaceae) genome and microarray database. CYP82D64 is able to hydroxylate xanthotoxin to generate 5-OH-xanthotoxin. Minor and limited amino acid changes in the CYP82D64 coding sequence between Citrus paradisi and Citrus hystrix provide the enzyme in the latter with the ability to hydroxylate herniarin, but with low efficiency. The kinetic constants of the enzyme are consistent with those of other enzymes of this type in plants and indicate that it may be the physiological substrate. The activity of the enzyme is identical to that of CYP71AZ6 identified in parsnip, showing possible evolutionary convergence between these two families of plants. It is highly possible that these molecules are derived from the synthesis of ubiquitous coumarins throughout the plant kingdom.
呋喃香豆素是防御性分子,主要存在于四个在系统发育上相距较远的植物科中。多年来,伞形科和芸香科一直在对生物合成途径进行分子特征描述。迄今为止在伞形科中获得的结果表明细胞色素 P450(CYP)家族中的 CYP71 家族在其中起着主要作用。在本工作中,我们通过对柑橘(芸香科)基因组和微阵列数据库的深入分析,描述了另一个 P450 亚家族 CYP82D 的重要性。CYP82D64 能够将花椒毒素羟化为 5-OH-花椒毒素。在柑橘属和枳属之间 CYP82D64 编码序列中的少数和有限的氨基酸变化使后者具有羟化茴芹素的能力,但效率较低。该酶的动力学常数与植物中该类型的其他酶一致,表明它可能是生理底物。该酶的活性与在欧洲防风草中鉴定的 CYP71AZ6 相同,表明这两个植物科之间可能存在进化趋同。这些分子极有可能来自于整个植物界中普遍存在的香豆素的合成。