Laboratory of Food and Biodynamic Chemistry, Graduate School of Agricultural Science, Tohoku University, Aoba-ku, Sendai, Japan.
Laboratory of Applied Bioorganic Chemistry, Graduate School of Agricultural Science, Tohoku University, Aoba-ku, Sendai, Japan.
Biosci Biotechnol Biochem. 2021 May 25;85(6):1383-1389. doi: 10.1093/bbb/zbab037.
A concise synthesis of a plasmenylethanolamine (PlsEtn-[16:0/18:1 n-9]), known as antioxidative phospholipids commonly found in cell membranes, has been achieved from an optically active known diol through 8 steps. The key transformations for the synthesis of PlsEtn-[16:0/18:1 n-9] are (1) regio- and Z-selective vinyl ether formation via the alkylation of a lithioalkoxy allyl intermediate with an alkyl iodide, and (2) a one-pot phosphite esterification-oxidation sequence to construct the ethanolamine phosphonate moiety in the presence of the vinyl ether functionality. The piperidine salt of synthetic PlsEtn-[16:0/18:1 n-9] was desalinated through reversed-phase high-performance liquid chromatography purification.
已通过 8 步反应,从一种光学活性已知二醇出发,简洁合成了一种已知的血浆鞘氨醇乙醇胺(PlsEtn-[16:0/18:1 n-9]),这是一种常见于细胞膜中的抗氧化性磷脂。合成 PlsEtn-[16:0/18:1 n-9]的关键转化是:(1) 通过锂氧代烯丙基中间体与碘代烷基的烷基化反应,实现区域和 Z-选择性乙烯基醚形成;(2) 在乙烯基醚官能团存在下,通过亚磷酸酯酯化-氧化一锅法反应构建乙醇胺膦酸酯部分。合成 PlsEtn-[16:0/18:1 n-9]的哌啶盐通过反相高效液相色谱纯化脱盐。