Lin Yutong, Malins Lara R
Research School of Chemistry, Australian National University Canberra ACT 2601 Australia
Chem Sci. 2020 Jul 30;11(39):10752-10758. doi: 10.1039/d0sc03701j.
The first total synthesis of cytotoxic cyanobacterial peptide natural products biseokeaniamides A-C is reported employing a robust solid-phase approach to peptide backbone construction followed by coupling of a key thiazole building block. To rapidly access natural product analogues, we have optimized an operationally simple electrochemical oxidative decarboxylation-nucleophilic addition pathway which exploits the reactivity of native C-terminal peptide carboxylates and abrogates the need for building block syntheses. Electrochemically-generated ,-acetal intermediates are engaged with electron-rich aromatics and organometallic reagents to forge modified amino acids and peptides. The value of this late-stage modification method is highlighted by the expedient and divergent production of bioactive peptide analogues, including compounds which exhibit enhanced cytotoxicity relative to the biseokeaniamide natural products.
报道了细胞毒性蓝藻肽天然产物双海葵酰胺A - C的首次全合成,采用了一种稳健的固相方法构建肽主链,随后偶联关键的噻唑构建块。为了快速获得天然产物类似物,我们优化了一种操作简单的电化学氧化脱羧 - 亲核加成途径,该途径利用天然C端肽羧酸盐的反应性,无需构建块合成。电化学产生的α,β - 缩醛中间体与富电子芳烃和有机金属试剂反应,以形成修饰的氨基酸和肽。这种后期修饰方法的价值通过生物活性肽类似物的便捷和多样化生产得到突出体现,包括相对于双海葵酰胺天然产物表现出增强细胞毒性的化合物。