Merkert Chemistry Center, Boston College, Chestnut Hill, MA, USA.
Supramolecular Science and Engineering Institute, University of Strasbourg and CNRS, Strasbourg, France.
Nat Chem. 2022 Jun;14(6):640-649. doi: 10.1038/s41557-022-00935-y. Epub 2022 May 16.
Many therapeutic agents are macrocyclic trisubstituted alkenes but preparation of these structures is typically inefficient and non-selective. A possible solution would entail catalytic macrocyclic ring-closing metathesis, but these transformations require high catalyst loading, conformationally rigid precursors and are often low yielding and/or non-stereoselective. Here we introduce a ring-closing metathesis strategy for synthesis of trisubstituted macrocyclic olefins in either stereoisomeric form, regardless of the level of entropic assistance. The goal was achieved by addressing several unexpected difficulties, including complications arising from pre-ring-closing metathesis alkene isomerization. The power of the method is highlighted by two examples. The first is the near-complete reversal of substrate-controlled selectivity in the formation of a macrolactam related to an antifungal natural product. The other is a late-stage stereoselective generation of an E-trisubstituted alkene in a 24-membered ring, en route to the cytotoxic natural product dolabelide C.
许多治疗剂是大环三取代烯烃,但这些结构的制备通常效率低且非选择性。一种可能的解决方案将需要催化大环闭环复分解,但这些转化需要高催化剂负载、构象刚性前体,并且通常产率低和/或非对映选择性差。在这里,我们介绍了一种用于合成三取代大环烯烃的闭环复分解策略,无论熵辅助的程度如何,都可以以两种立体异构体形式合成。通过解决几个意想不到的困难实现了这一目标,包括预闭环复分解烯烃异构化引起的并发症。该方法的强大之处通过两个例子得到了突出体现。第一个例子是在形成与抗真菌天然产物相关的大环内酰胺时,底物控制选择性几乎完全逆转。另一个例子是在 24 元环中晚期立体选择性地生成 E-三取代烯烃,这是细胞毒性天然产物 dolabelide C 的途径。