Departamento de Química, Centro de Investigación en Síntesis Química, Universidad de La Rioja, 26006 Logroño, La Rioja, Spain.
Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance (BRTA), Bizkaia Technology Park, Building 800, 48160 Derio, Spain.
J Org Chem. 2022 Jul 1;87(13):8730-8743. doi: 10.1021/acs.joc.2c01034. Epub 2022 Jun 22.
Chiral bicyclic -acetal isoserine derivatives have been synthesized by an acid-catalyzed tandem ,-acetalization/intramolecular transcarbamoylation reaction between conveniently protected l-isoserine and 2,2,3,3-tetramethoxybutane. The delicate balance of the steric interactions between the different functional groups on each possible diastereoisomer controls their thermodynamic stability and hence the experimental product distribution. These chiral isoserine derivatives undergo diastereoselective alkylation at the α position, proceeding with either retention or inversion of the configuration depending on the relative configuration of the stereocenters. Quantum mechanical calculations revealed that a concave-face alkylation is favored due to smaller torsional and steric interactions at the bicyclic scaffold. This synthetic methodology gives access to chiral β-amino acids, attractive compounds bearing a quaternary stereocenter at the α position with applications in peptidomimetic and medicinal chemistry. Thus, enantiopure α-alkylisoserine derivatives were produced upon acidic hydrolysis of these alkylated scaffolds. In addition, α-benzylisoserine was readily transformed into a five-membered ring cyclic sulfamidate, which was ring opened regioselectively with representative nucleophiles to yield other types of enantiopure β-amino acids such as α-benzyl-α-heterofunctionalized-β-alanines and α-benzylnorlanthionine derivatives.
手性双环缩醛异丝氨酸衍生物通过方便保护的 l-异丝氨酸和 2,2,3,3-四甲氧基丁烷之间的酸催化串联缩醛化/分子内转氨甲酰化反应合成。不同功能基团之间的立体相互作用的微妙平衡控制它们的热力学稳定性,从而控制实验产物分布。这些手性异丝氨酸衍生物在α位发生非对映选择性烷基化,根据立体中心的相对构型,构型以保留或反转的方式进行。量子力学计算表明,由于双环支架处的扭转和空间相互作用较小,凹面烷基化更有利。这种合成方法可获得手性β-氨基酸,这些具有季立体中心的吸引人的化合物在肽模拟和药物化学中有应用。因此,这些烷基化支架经酸性水解后可得到对映纯的α-烷基异丝氨酸衍生物。此外,α-苄基异丝氨酸很容易转化为五元环环状磺酰胺酯,该环状磺酰胺酯可与代表性亲核试剂区域选择性开环,生成其他类型的对映纯β-氨基酸,如α-苄基-α-杂官能化-β-丙氨酸和α-苄基 norlanthionine 衍生物。