Theodore Christine M, Lorig-Roach Nicholas, Still Patrick C, Johnson Tyler A, Drašković Marija, Schwochert Joshua A, Naphen Cassandra N, Crews Mitchell S, Barker Simone A, Valeriote Frederick A, Lokey R Scott, Crews Phillip
†Department of Chemistry and Biochemistry, University of California, Santa Cruz, California 95064, United States.
‡Josephine Ford Cancer Center, Henry Ford Health System, Detroit, Michigan 48202, United States.
J Nat Prod. 2015 Mar 27;78(3):441-52. doi: 10.1021/np500840n. Epub 2015 Feb 20.
Sampling of California nearshore sediments resulted in the isolation of a Gram-negative bacterium, Photobacterium halotolerans, capable of producing unusual biosynthetic products. Liquid culture in artificial seawater-based media provided cyclic depsipeptides including four known compounds, kailuins B-E (2-5), and two new analogues, kailuins G and H (7 and 8). The structures of the new and known compounds were confirmed through extensive spectroscopic and Marfey's analyses. During the course of these studies, a correction was made to the previously reported double-bond geometry of kailuin D (4). Additionally, through the application of a combination of derivatization with Mosher's reagent and extensive (13)C NMR shift analysis, the previously unassigned chiral center at position C-3 of the β-acyloxy group of all compounds was determined. To evaluate bioactivity and structure-activity relationships, the kailuin core (13) and kailuin lactam (14) were prepared by chiral synthesis using an Fmoc solid-phase peptide strategy followed by solution-phase cyclization. All isolated compounds and synthetic cores were assayed for solid tumor cell cytotoxicity and showed only minimal activity, contrary to other published reports. Additional phenotypic screenings were done on 4 and 5, with little evidence of activity.
对加利福尼亚近岸沉积物进行采样,分离出了一种革兰氏阴性细菌——耐盐发光杆菌(Photobacterium halotolerans),该细菌能够产生不同寻常的生物合成产物。在基于人工海水的培养基中进行液体培养,得到了环缩肽,其中包括四种已知化合物,即凯鲁因B - E(2 - 5),以及两种新的类似物,凯鲁因G和H(7和8)。通过广泛的光谱分析和马尔菲分析确定了新化合物和已知化合物的结构。在这些研究过程中,对之前报道的凯鲁因D(4)的双键几何结构进行了修正。此外,通过应用莫舍尔试剂衍生化和广泛的¹³C NMR位移分析相结合的方法,确定了所有化合物β - 酰氧基C - 3位上之前未确定的手性中心。为了评估生物活性和构效关系,采用Fmoc固相肽策略并随后进行溶液相环化,通过手性合成制备了凯鲁因核心(13)和凯鲁因内酰胺(14)。对所有分离得到的化合物和合成核心进行了实体瘤细胞细胞毒性测定,结果显示活性极小,这与其他已发表的报告相反。对化合物4和5进行了额外的表型筛选,几乎没有活性证据。