Department of Organic Chemistry, Faculty of Science, Charles University, Hlavova 8, 128 00 Praha 2, Czech Republic.
Faculty of Mathematics and Physics, Institute of Physics, Charles University, Ke Karlovu 2026/5, 121 16 Praha 2, Czech Republic.
Org Biomol Chem. 2022 May 18;20(19):3960-3966. doi: 10.1039/d2ob00553k.
Polycyclic compounds with -methyl substitution, structurally related to Amaryllidaceae alkaloids, have been synthesised, together with their analogues bearing a quaternary nitrogen atom. To prevent the lone electron pair of the nitrogen from interfering with the reaction sequence, two approaches to the synthesis were investigated: -oxidation and Boc protection of the nitrogen. The second method was more successful due to the limited stability of -oxides in the halocyclisation step. An asymmetric version of the synthesis was also developed for this type of compounds. The prepared products were tested for their cholinesterase inhibitory activity and the results were rationalised by molecular docking studies with human acetylcholinesterase (hAChE) and butyrylcholinesterase (hBuChE). In general, our products were more active against BuChE than against AChE, and it was noted that larger ligands should be prepared for future studies, since in some cases acetylcholine can still fit into the active site along with the bound ligand.
已合成了具有 -甲基取代基、与石蒜科生物碱结构相关的多环化合物,以及带有季氮原子的类似物。为了防止氮的孤电子对干扰反应序列,研究了两种合成方法:-氧化和 Boc 保护氮。由于 -氧化物在卤环化步骤中的稳定性有限,第二种方法更为成功。还针对此类化合物开发了不对称合成方法。测试了制备的产物对胆碱酯酶的抑制活性,并通过与人类乙酰胆碱酯酶 (hAChE) 和丁酰胆碱酯酶 (hBuChE) 的分子对接研究对结果进行了合理化。一般来说,我们的产物对 BuChE 的抑制活性比对 AChE 的抑制活性更高,并且注意到应该为未来的研究准备更大的配体,因为在某些情况下,乙酰胆碱仍然可以与结合的配体一起进入活性部位。