Ramos-Valdivia Ana C, Cerda-García-Rojas Carlos M
Departamento de Biotecnología y Bioingeniería, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV-IPN), Ciudad de México 07360, Mexico.
Departamento de Química, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV-IPN), Ciudad de México 07360, Mexico.
Curr Opin Plant Biol. 2024 Dec;82:102648. doi: 10.1016/j.pbi.2024.102648. Epub 2024 Oct 3.
The monoterpenoid oxindole alkaloids (MOA) are specialized plant metabolites of pharmacological importance, whose biosynthesis is linked to a unique oxidative process of monoterpenoid indole alkaloids (MIA). These transformations arise from complex biosynthetic pathways defined by species, organs, tissues, and growth stages. Initial studies of their biosynthesis using labeled precursors date back more than five decades ago. This review shows the advances in this topic within the years 2022-2023, which highlight the research by integrative omics strategies, validating previously stated hypotheses. The MOA biosynthesis pathway is beginning to be elucidated, especially in the early and intermediate stages starting from MIA. Also, progress in the characterization of enzymes that regulate the process has been made. The discovery of a key enzyme in the formation of the spirooxindole scaffold represents a starting point for an enormous amount of work that remains to be done to clarify and understand the formation mechanisms of MOA.
单萜吲哚生物碱(MOA)是具有重要药理作用的特殊植物代谢产物,其生物合成与单萜吲哚生物碱(MIA)独特的氧化过程相关。这些转化源于由物种、器官、组织和生长阶段所定义的复杂生物合成途径。利用标记前体对其生物合成进行的初步研究可追溯到五十多年前。本综述展示了2022年至2023年该主题的进展,这些进展突出了通过综合组学策略进行的研究,验证了先前提出的假设。MOA生物合成途径正开始被阐明,特别是从MIA开始的早期和中间阶段。此外,在调控该过程的酶的表征方面也取得了进展。螺环氧化吲哚支架形成过程中关键酶的发现是大量工作的起点,仍有待完成以阐明和理解MOA的形成机制。