Namba Kosuke, Takeuchi Kohei, Kaihara Yukari, Oda Masataka, Nakayama Akira, Nakayama Atsushi, Yoshida Masahiro, Tanino Keiji
Department of Pharmaceutical Science, Tokushima University, 1-78 Shomachi, Tokushima 770-8505, Japan.
Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo 060-0810, Japan.
Nat Commun. 2015 Nov 4;6:8731. doi: 10.1038/ncomms9731.
Palau'amine has received a great deal of attention in the past two decades as an attractive synthetic target by virtue of its intriguing molecular architecture and significant immunosuppressive activity. Here we report the total synthesis of palau'amine characterized by the construction of an ABDE tetracyclic ring core including a trans-bicylo[3.3.0]octane skeleton at a middle stage of total synthesis. The ABDE tetracyclic ring core is constructed by a cascade reaction of a cleavage of the N-N bond, including simultaneous formation of imine, the addition of amide anion to the resulting imine (D-ring formation) and the condensation of pyrrole with methyl ester (B-ring formation) in a single step. The synthetic palau'amine is confirmed to exhibit excellent immunosuppressive activity. The present synthetic route has the potential to help elucidate a pharmacophore as well as the mechanistic details of immunosuppressive activity.
在过去二十年中,帕劳胺因其引人入胜的分子结构和显著的免疫抑制活性,作为一个具有吸引力的合成目标受到了广泛关注。在此,我们报道了帕劳胺的全合成,其特点是在全合成的中间阶段构建了一个包含反式双环[3.3.0]辛烷骨架的ABDE四环核心。ABDE四环核心是通过N-N键断裂的级联反应构建的,包括一步同时形成亚胺、酰胺阴离子加成到所得亚胺上(形成D环)以及吡咯与甲酯缩合(形成B环)。合成的帕劳胺被证实具有优异的免疫抑制活性。目前的合成路线有潜力帮助阐明药效团以及免疫抑制活性的作用机制细节。