Department of Plant Biology, Institute of Biology, State University of Campinas, Campinas, SP, Brazil.
Department of Plant Biology, Institute of Biology, State University of Campinas, Campinas, SP, Brazil; Department of Crop Science, College of Agriculture "Luiz de Queiroz", University of São Paulo, Piracicaba, SP, Brazil.
Phytochemistry. 2019 Oct;166:112063. doi: 10.1016/j.phytochem.2019.112063. Epub 2019 Jul 4.
Chlorogenic acids (CGAs) and the biopolymer lignin are both products of the phenylpropanoid pathway. Whereas CGAs have been reported to play a role during stress responses, lignin is a major component of secondary cell walls, providing physical strength and hydrophobicity to supportive and water-conducting tissues. Because the chemical structure of CGAs largely resembles those of some lignin intermediates and because CGAs can be converted back to hydroxycinnamoyl-CoAs in vitro, CGAs have been considered authentic intermediates of the lignin biosynthetic pathway. However, it is still unclear whether and how the CGA pool can be channeled towards the production of lignin monomers in response to developmental or environmental signals. Comprehensive studies on the catalytic activity of recombinant enzymes together with functional characterizations in planta have been very useful in understanding the potential interdependence between these two metabolic routes. Here we present the current understanding on CGA metabolism and discuss the biochemical and molecular evidence of the metabolic re-routing of CGAs towards lignin.
绿原酸 (CGAs) 和生物聚合物木质素都是苯丙烷途径的产物。虽然已经报道 CGAs 在应激反应中发挥作用,但木质素是次生细胞壁的主要成分,为支持和输水组织提供物理强度和疏水性。由于 CGAs 的化学结构在很大程度上类似于一些木质素中间产物的结构,并且 CGAs 可以在体外转化回羟基肉桂酰辅酶 A,因此 CGAs 被认为是木质素生物合成途径的真实中间产物。然而,目前尚不清楚 CGA 池是否以及如何在应对发育或环境信号时被引导朝向木质素单体的生成。对重组酶的催化活性进行综合研究以及在植物体内进行功能表征,对于理解这两条代谢途径之间的潜在相互依存关系非常有用。本文介绍了目前对 CGA 代谢的理解,并讨论了 CGA 代谢向木质素重新定向的生化和分子证据。