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Integrating Molecular Networking and Biological Assays to Target the Isolation of a Cytotoxic Cyclic Octapeptide Samoamide A from an American Samoan Marine Cyanobacterium

机译:整合分子网络和生物学分析以靶向从美国萨摩亚海洋蓝细菌分离细胞毒性环八肽萨莫酰胺A

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摘要

Integrating LC-MS/MS molecular networking and bioassay-guided fractionation enabled the targeted isolation of a new and bioactive cyclic octapeptide, samoamide A (>1), from a sample of cf. Symploca sp. collected in American Samoa. The structure of >1 was established by detailed 1D and 2D NMR experiments, HRESIMS data, and chemical degradation/chromatographic (e.g., Marfey’s analysis) studies. Pure compound >1 was shown to have in vitro cytotoxic activity against several human cancer cell lines in both traditional cell culture and zone inhibition bioassays. Although there was no particular selectivity between the cell lines tested for samoamide A, the most potent activity was observed against H460 human non-small cell lung cancer cells (IC50 = 1.1 μM). Molecular modeling studies suggested that one possible mechanism of action for >1 is the inhibition of the enzyme dipeptidyl peptidase (CD26, DPP4) at a reported allosteric binding site, which could lead to many downstream pharmacological effects. However, this interaction was moderate when tested in vitro at up to 10 μM, and only resulted in about 16% peptidase inhibition. Combining bioassay screening with the cheminformatics strategy of LC-MS/MS molecular networking as a discovery tool expedited the targeted isolation of a natural product possessing both a novel chemical structure and a desired biological activity.
机译:结合LC-MS / MS分子网络和生物测定指导的分馏,可以从cf.样品中有针对性地分离出新的生物活性环状八肽samoamide A(> 1 )。 Symploca sp。收集在美属萨摩亚。 > 1 的结构是通过详细的1D和2D NMR实验,HRESIMS数据以及化学降解/色谱(例如Marfey分析)研究建立的。在传统的细胞培养和区域抑制生物测定法中,纯化合物> 1 已显示出对几种人类癌细胞系的体外细胞毒活性。尽管在所测试的氨酰胺A的细胞系之间没有特别的选择性,但观察到针对H460人非小细胞肺癌细胞的最强活性(IC50 = 1.1μM)。分子模型研究表明,> 1 的一种可能的作用机制是在报道的变构结合位点抑制二肽基肽酶(CD26,DPP4),这可能导致许多下游药理作用。但是,当在体外以高达10μM的速度测试时,这种相互作用是中等程度的,仅导致约16%的肽酶抑制作用。将生物测定筛选与LC-MS / MS分子网络的化学信息学策略相结合,将其作为一种发现工具,可加快对具有新颖化学结构和所需生物活性的天然产物进行目标分离。

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