Department of Biochemistry, Max Planck Institute for Chemical Ecology, Jena, Germany.
Phytochemistry. 2013 Jul;91:177-86. doi: 10.1016/j.phytochem.2012.09.009. Epub 2012 Oct 22.
Complexation of alkaloids is an important strategy plants utilize to facilitate storage in vacuoles and avoid autotoxicity. Previous studies have implicated hydroxycinnamoyl quinate esters in the complexation of purine alkaloids in Coffea arabica. The goal of this study was to determine if Erythroxylum coca uses similar complexation agents to store abundant tropane alkaloids, such as cocaine and cinnamoyl cocaine. Metabolite analysis of various E. coca organs established a close correlation between levels of coca alkaloids and those of two hydroxycinnamoyl esters of quinic acid, chlorogenic acid and 4-coumaroyl quinate. The BAHD acyltransferase catalyzing the final step in hydroxycinnamoyl quinate biosynthesis was isolated and characterized, and its gene expression found to correlate with tropane alkaloid accumulation. A physical interaction between chlorogenic acid and cocaine was observed and quantified in vitro using UV and NMR spectroscopic methods yielding similar values to those reported for a caffeine chlorogenate complex in C. arabica. These results suggest that storage of cocaine and other coca alkaloids in large quantities in E. coca involves hydroxycinnamoyl quinate esters as complexation partners.
生物碱的络合是植物利用的一种重要策略,有助于在液泡中储存并避免自毒性。先前的研究表明,在阿拉伯咖啡中,羟基肉桂酰奎宁酸酯参与了嘌呤生物碱的络合。本研究的目的是确定古柯叶是否使用类似的络合剂来储存丰富的托烷生物碱,如可卡因和肉桂酰可卡因。对各种古柯叶器官的代谢物分析确立了古柯碱水平与两种奎宁酸羟基肉桂酰酯(绿原酸和 4-咖啡酰奎宁酸)水平之间的密切相关性。催化羟基肉桂酰奎宁酸生物合成最后一步的 BAHD 酰基转移酶被分离并进行了表征,其基因表达与托烷生物碱的积累相关。使用紫外和 NMR 光谱方法在体外观察到并定量了绿原酸与可卡因之间的物理相互作用,得到的值与在阿拉伯咖啡中报道的咖啡因绿原酸盐络合物的值相似。这些结果表明,古柯叶中大量储存可卡因和其他古柯碱涉及羟基肉桂酰奎宁酸酯作为络合伴侣。