Carlier Paul R, Zhao Hongwu, DeGuzman Joe, Lam Polo C-H
Department of Chemistry, Virginia Tech, Blacksburg, Virginia 24061, USA.
J Am Chem Soc. 2003 Sep 24;125(38):11482-3. doi: 10.1021/ja0365781.
Glycine-derived 1,4-benzodiazepine-2-ones such as diazepam are chiral by virtue of the boat-shaped conformation of the diazepine ring and exist as a racemic mixture of conformational enantiomers. However, the presence of a chiral center at C-3 of the benzodiazepine perturbs this equilibrium and preferentially stabilizes one ring conformer. We report that N-i-Pr 1,4-benzodiazepine-2-ones derived from (S)-Ala and (S)-Phe can be deprotonated and alkylated in 86-99% ee, despite the fact that the original chiral center is destroyed in the deprotonation step. We attribute this highly enantioselective alkylation to the chiral memory of the benzodiazepine ring. This protocol provides easy access to the previously unexplored "quaternary" 1,4-benzodiazepine-2-ones.
甘氨酸衍生的1,4 - 苯二氮䓬 - 2 - 酮(如地西泮)由于苯二氮䓬环的船型构象而具有手性,以构象对映体的外消旋混合物形式存在。然而,苯二氮䓬C - 3处手性中心的存在扰乱了这种平衡,并优先稳定了一种环构象。我们报道,尽管在去质子化步骤中原有的手性中心被破坏,但源自(S)-丙氨酸和(S)-苯丙氨酸的N - 异丙基1,4 - 苯二氮䓬 - 2 - 酮仍能以86 - 99%的对映体过量进行去质子化和烷基化反应。我们将这种高度对映选择性烷基化归因于苯二氮䓬环的手性记忆。该方法为之前未被探索的“季铵型”1,4 - 苯二氮䓬 - 2 - 酮提供了简便的合成途径。