Department of Chemistry and Department of Molecular Medicine , The Scripps Research Institute , La Jolla , California 92037 , United States.
ACS Chem Biol. 2018 May 18;13(5):1299-1306. doi: 10.1021/acschembio.8b00096. Epub 2018 Apr 19.
The asmarines are a family of cytotoxic natural products whose mechanism of action is unknown. Here, we used chemical synthesis to reverse engineer the asmarines and understand the functions of their individual components. We found that the potent asmarine analog "delmarine" arrested the mammalian cell cycle in the G1 phase and that both cell cycle arrest and cytotoxicity were rescued by cotreatment with ferric and ferrous salts. Cellular iron deprivation was clearly indicated by changes in iron-responsive protein markers, and cytotoxicity occurred independently of radical oxygen species (ROS) production. Chemical synthesis allowed for annotation of the distinct structural motifs required for these effects, especially the unusual diazepine, which we found enforced an iron-binding tautomer without distortion of the NCNO dihedral angle out of plane. With this information and a correlation of cytotoxicity with logP, we could replace the diazepine by lipophilic group appendage to N9, which avoided steric clash with the N6-alkyl required to access the aminopyridine. This study transformed the asmarines, scarce marine metabolites, into easily synthesized, modular chemotypes that may complement or succeed iron-selective binders in clinical trials and use.
Asmarines 是一类细胞毒性天然产物,其作用机制尚不清楚。在这里,我们使用化学合成来对 Asmarines 进行反向工程,以了解其各个成分的功能。我们发现,强效的 Asmarine 类似物“delmarine”可使哺乳动物细胞周期在 G1 期停滞,细胞周期停滞和细胞毒性均可通过与铁盐和亚铁盐共处理来挽救。细胞内铁耗竭通过铁反应蛋白标志物的变化得到明确指示,并且细胞毒性与活性氧 (ROS) 的产生无关。化学合成允许对这些作用所需的独特结构基序进行注释,特别是不寻常的二氮杂环庚烷,我们发现它强制形成一个铁结合互变异构体,而不会使 NCNO 二面角变形出平面。有了这些信息以及与 logP 的相关性,我们可以用亲脂性基团取代 N9 上的二氮杂环庚烷,从而避免与 N6-烷基发生空间位阻,而 N6-烷基是进入氨基吡啶所必需的。这项研究将稀有的海洋代谢物 Asmarines 转化为易于合成的、模块化的化学型,这些化学型可能会在临床试验和应用中补充或取代铁选择性结合物。