School of Environmental Science and Engineering, Gwangju Institute of Science and Technology, Gwangju, South Korea.
Appl Microbiol Biotechnol. 2011 Mar;89(6):1773-82. doi: 10.1007/s00253-010-2989-1. Epub 2010 Nov 10.
Biphenyl dioxygenase from Pseudomonas pseudoalcaligenes strain KF707 expressed in Escherichia coli was found to exhibit monooxygenase activity toward four stereoisomers of isoflavan-4-ol. LC-MS and LC-NMR analyses of the metabolites revealed that the corresponding epoxides formed between C2' and C3' on the B-ring of each isoflavan-4-ol substrate were the sole products. The relative reactivity of the stereoisomers was found to be in the order: (3S,4S)-cis-isoflavan-4-ol > (3R,4S)-trans-isoflavan-4-ol > (3S,4R)-trans-isoflavan-4-ol > (3R,4R)-cis-isoflavan-4-ol and this likely depended upon the absolute configuration of the 4-OH group on the isoflavanols, as explained by an enzyme-substrate docking study. The epoxides produced from isoflavan-4-ols by P. pseudoalcaligenes strain KF707 were further abiotically transformed into pterocarpan, the molecular structure of which is commonly found as part of plant-protective phytoalexins, such as maackiain from Cicer arietinum and medicarpin from Medicago sativa.
从假单胞菌属假产碱假单胞菌KF707 中表达的联苯双加氧酶被发现对异黄烷-4-醇的四种立体异构体具有单加氧酶活性。代谢产物的 LC-MS 和 LC-NMR 分析表明,在每个异黄烷-4-醇底物的 B 环的 C2'和 C3'之间形成的相应环氧化物是唯一的产物。立体异构体的相对反应性被发现为:(3S,4S)-顺式-异黄烷-4-醇>(3R,4S)-反式-异黄烷-4-醇>(3S,4R)-反式-异黄烷-4-醇>(3R,4R)-顺式-异黄烷-4-醇,这可能取决于异黄烷醇 4-OH 基团的绝对构型,如酶-底物对接研究所解释。假单胞菌属假产碱假单胞菌 KF707 从异黄烷-4-醇产生的环氧化物进一步在非生物条件下转化为紫檀烷,其分子结构通常作为植物保护植物抗毒素的一部分存在,例如鹰嘴豆芽素 A 来自鹰嘴豆和 medicarpin 来自紫花苜蓿。