Shou M G, Yang S K
Department of Pharmacology, F. Edward Hébert School of Medicine, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20814-4799.
Chirality. 1990;2(3):141-9. doi: 10.1002/chir.530020304.
Enantiomeric pairs of 1-hydroxy-3-hydroxymethylcholanthrene (1-OH-3-OHMC), 3-methylcholanthrene (3MC) trans- and cis-1,2-diols, and 1-hydroxy-3-methylcholanthrene (1-OH-3MC) were resolved by HPLC using a covalently bonded (R)-N-(3,5-dinitrobenzoyl)phenylglycine chiral stationary phase (Pirkle type 1A) column. The absolute configuration of an enantiomeric 3MC trans-1,2-diol was established by the exciton chirality CD method following conversion to a bis-p-N,N-dimethylaminobenzoate. Incubation of an enantiomeric 1-OH-3MC with rat liver microsomes resulted in the formation of enantiomeric 3MC trans- and cis-1,2-diols; the absolute configurations of the enantiomeric 1-OH-3MC and 3MC cis-1,2-diol were established on the basis of the absolute configuration of an enantiomeric 3MC trans-1,2-diol. Absolute configurations of enantiomeric 1-OH-3-OHMC were determined by comparing their CD spectra with those of enantiomeric 1-OH-3MC. The relative amount of three aliphatic hydroxylation products formed by rat liver microsomal metabolism of racemic 1-OH-3MC was 1-OH-3-OHMC greater than 3MC cis-1,2-diol greater than 3MC trans-1,2-diol. Enzymatic hydroxylation at C2 of racemic 1-OH-3MC was enantioselective toward the 1S-enantiomer over the 1R-enantiomer (approximately 3/1); hydroxylation at the C3-methyl group was enantioselective toward the 1R-enantiomer over the 1S-enantiomer (approximately 58/42). Rat liver microsomal C2-hydroxylation of racemic 1-OH-3MC resulted in a 3MC trans-1,2-diol with a (1S,2S)/(1R,2R) ratio of 63/37 and a 3MC cis-1,2-diol with a (1S,2R)/(1R,2S) ratio of 12/88, respectively.
使用共价键合的(R)-N-(3,5-二硝基苯甲酰基)苯甘氨酸手性固定相(Pirkle 1A 型)柱,通过高效液相色谱法拆分了 1-羟基-3-羟甲基胆蒽(1-OH-3-OHMC)、3-甲基胆蒽(3MC)的反式和顺式-1,2-二醇以及 1-羟基-3-甲基胆蒽(1-OH-3MC)的对映体对。将对映体 3MC 反式-1,2-二醇转化为双对-N,N-二甲基氨基苯甲酸酯后,通过激子手性圆二色光谱法确定其绝对构型。将对映体 1-OH-3MC 与大鼠肝微粒体一起孵育,导致形成对映体 3MC 的反式和顺式-1,2-二醇;基于对映体 3MC 反式-1,2-二醇的绝对构型确定了对映体 1-OH-3MC 和 3MC 顺式-1,2-二醇的绝对构型。通过将对映体 1-OH-3-OHMC 的圆二色光谱与对映体 1-OH-3MC 的光谱进行比较,确定了对映体 1-OH-3-OHMC 的绝对构型。外消旋 1-OH-3MC 经大鼠肝微粒体代谢形成的三种脂肪族羟基化产物的相对量为 1-OH-3-OHMC 大于 3MC 顺式-1,2-二醇大于 3MC 反式-1,2-二醇。外消旋 1-OH-3MC 在 C2 位的酶促羟基化对 1S-对映体比对 1R-对映体具有对映选择性(约为 3/1);在 C3-甲基上的羟基化对 1R-对映体比对 1S-对映体具有对映选择性(约为 58/42)。外消旋 1-OH-3MC 的大鼠肝微粒体 C2-羟基化反应分别产生了(1S,2S)/(1R,2R)比例为 63/37 的 3MC 反式-1,2-二醇和(1S,2R)/(1R,2S)比例为 12/88 的 3MC 顺式-1,2-二醇。