Wang Fang-Xin, Yan Jia-Lei, Liu Zhixin, Zhu Tingshun, Liu Yingguo, Ren Shi-Chao, Lv Wen-Xin, Jin Zhichao, Chi Yonggui Robin
Division of Chemistry & Biological Chemistry, School of Physical & Mathematical Sciences, Nanyang Technological University Singapore 637371 Singapore.
State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University Huaxi District Guiyang 550025 China
Chem Sci. 2021 Jun 28;12(30):10259-10265. doi: 10.1039/d1sc02442f. eCollection 2021 Aug 4.
The construction of an isoquinoline skeleton typically starts with benzene derivatives as substrates with the assistance of acids or transition metals. Disclosed here is a concise approach to prepare isoquinoline analogues by starting with pyridines to react with β-ethoxy α,β-unsaturated carbonyl compounds under basic conditions. Multiple substitution patterns and a relatively large number of functional groups (including those sensitive to acidic conditions) can be tolerated in our method. In particular, our protocol allows for efficient access to tricyclic isoquinolines found in hundreds of natural products with interesting bioactivities. The efficiency and operational simplicity of introducing structural complexity into the isoquinoline frameworks can likely enable the collective synthesis of a large set of natural products. Here we show that fredericamycin A could be obtained a short route by using our isoquinoline synthesis as a key step.
异喹啉骨架的构建通常以苯衍生物为底物,在酸或过渡金属的辅助下进行。本文公开了一种简洁的方法,该方法从吡啶开始,在碱性条件下与β-乙氧基α,β-不饱和羰基化合物反应来制备异喹啉类似物。在我们的方法中,可以容忍多种取代模式和相对大量的官能团(包括那些对酸性条件敏感的官能团)。特别地,我们的方案允许高效地获得存在于数百种具有有趣生物活性的天然产物中的三环异喹啉。将结构复杂性引入异喹啉骨架的效率和操作简便性可能能够实现大量天然产物的集体合成。在此我们表明,通过使用我们的异喹啉合成作为关键步骤,可以通过一条简短的路线获得弗雷德里卡霉素A。