Michael Barbour P, Podoll Jessica D, Marholz Laura J, Wang Xiang
Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309, United States.
Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309, United States.
Bioorg Med Chem Lett. 2014 Dec 15;24(24):5602-5605. doi: 10.1016/j.bmcl.2014.10.094. Epub 2014 Nov 4.
Methicillin-resistant Staphylococcus aureus (MRSA) is one of the most prevalent drug resistant bacteria. In 2012, over 11,000 fatalities in the United States were directly attributable to MRSA. In an effort to develop novel structural and mechanistic classes of antibacterial agents to fight against MRSA, we have optimized a hit compound, Of4, previously discovered in a screening campaign of a bio-inspired polycyclic indoline library previously developed in our lab. We took advantage of our concise and versatile synthetic strategy to conduct initial structure-activity relationship studies of Of4, and we now report the discovery of compound 4k as a more potent antibacterial agent against S. aureus. Compound 4k also displayed equivalent activity in four MRSA and a methicillin-susceptible strains while demonstrating an improved mammalian cytotoxicity profile compared to Of4. Interestingly, 4k shares the same tricyclic indoline core as Of1, a β-lactam-selective resistance-modifying agent, but harbors a distinct modification pattern conferring unique bioactivity. This phenomenon is reminiscent of many bioactive natural products.
耐甲氧西林金黄色葡萄球菌(MRSA)是最常见的耐药细菌之一。2012年,美国有超过11000人直接死于MRSA。为了开发新型结构和作用机制的抗菌剂来对抗MRSA,我们优化了一种命中化合物Of4,它是之前在我们实验室开发的一个受生物启发的多环吲哚啉文库的筛选活动中发现的。我们利用简洁通用的合成策略对Of4进行了初步构效关系研究,现在报告化合物4k的发现,它是一种对金黄色葡萄球菌更有效的抗菌剂。化合物4k在四种MRSA菌株和一种甲氧西林敏感菌株中表现出同等活性,同时与Of4相比,其对哺乳动物的细胞毒性有所改善。有趣的是,4k与β-内酰胺选择性耐药修饰剂Of1具有相同的三环吲哚啉核心,但具有独特的修饰模式,赋予其独特的生物活性。这种现象让人联想到许多生物活性天然产物。