Zaharia L Irina, Gai Yuanzhu, Nelson Ken M, Ambrose Stephen J, Abrams Suzanne R
National Research Council of Canada, Plant Biotechnology Institute, 110 Gymnasium Place, Saskatoon, SK, Canada S7N 0W9.
Phytochemistry. 2004 Dec;65(24):3199-209. doi: 10.1016/j.phytochem.2004.09.007.
In a biotransformation study to prepare deuterium labelled phaseic acid (PA) from deuterated abscisic acid (ABA), the product contained fewer deuterium atoms than expected. Thus, spectroscopic data of isolated deuterated PA prepared from biotransformation of (+)-5,8',8',8'-d4-ABA in maize (Zea mays L. cv. Black Mexican Sweet) cell suspension cultures showed 83% deuterium incorporation at the 8'-exo position. Also, metabolism studies of (+)-4,5-d2-ABA in maize resulted in the isolation of deuterium labelled ABA derivatives, namely PA, dihydrophaseic acid (DPA), 4'-O-beta-D-glucopyranosylDPA, 8'-hydroxyPA, 8'-hydroxyDPA and 8'-oxoDPA, as deduced from spectroscopic methods. These combined results suggested the presence of an aldehyde intermediate which is either: (a) reduced to 8'-hydroxyABA and cyclized to PA, or (b) is hydrated and cyclized to 8'-hydroxyPA or (c) is further oxidized to the acid and cyclized to 8'-oxoPA. The chemical synthesis of this intermediate, as well as its biotransformation in maize cell cultures is presented.
在一项从氘代脱落酸(ABA)制备氘代紫黄质酸(PA)的生物转化研究中,产物所含的氘原子比预期的少。因此,在玉米(Zea mays L. cv. Black Mexican Sweet)细胞悬浮培养物中,由(+)-5,8',8',8'-d4-ABA生物转化制备的分离氘代PA的光谱数据显示,在8'-外位有83%的氘掺入。此外,玉米中(+)-4,5-d2-ABA的代谢研究导致分离出氘代ABA衍生物,即PA、二氢紫黄质酸(DPA)、4'-O-β-D-吡喃葡萄糖基DPA、8'-羟基PA、8'-羟基DPA和8'-氧代DPA,这是通过光谱方法推断出来的。这些综合结果表明存在一种醛中间体,其可能是:(a)还原为8'-羟基ABA并环化为PA,或(b)水合并环化为8'-羟基PA,或(c)进一步氧化为酸并环化为8'-氧代PA。本文介绍了该中间体的化学合成及其在玉米细胞培养物中的生物转化。