Nicolaou K C, Pulukuri Kiran Kumar, Rigol Stephan, Buchman Marek, Shah Akshay A, Cen Nicholas, McCurry Megan D, Beabout Kathryn, Shamoo Yousif
Department of Chemistry, BioScience Research Collaborative and ‡Department of BioSciences, Rice University , 6100 Main Street, Houston, Texas 77005, United States.
J Am Chem Soc. 2017 Nov 8;139(44):15868-15877. doi: 10.1021/jacs.7b08749. Epub 2017 Oct 24.
An improved and enantioselective total synthesis of antibiotic CJ-16,264 through a practical kinetic resolution and an iodolactonization reaction to form the iodo pyrrolizidinone fragment of the molecule is described. A series of racemic and enantiopure analogues of CJ-16,264 was designed and synthesized through the developed synthetic technologies and tested against drug-resistant bacterial strains. These studies led to interesting structure-activity relationships and the identification of a number of simpler, and yet equipotent, or even more potent, antibacterial agents than the natural product, thereby setting the foundation for further investigations in the quest for new anti-infective drugs.
本文描述了一种通过实用的动力学拆分和碘内酯化反应来合成抗生素CJ - 16,264的改进对映选择性全合成方法,该反应用于形成分子的碘代吡咯里西啶酮片段。通过所开发的合成技术设计并合成了一系列CJ - 16,264的外消旋和对映体纯类似物,并对耐药菌株进行了测试。这些研究得出了有趣的构效关系,并鉴定出了一些比天然产物更简单但具有同等效力甚至更强效力的抗菌剂,从而为进一步探索新型抗感染药物奠定了基础。