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利用癌症基因依赖性图谱识别.果实中细胞毒性烯基衍生物的作用机制

Using the Cancer Dependency Map to Identify the Mechanism of Action of a Cytotoxic Alkenyl Derivative from the Fruit of .

机构信息

Natural Products Discovery Group, Institute for Natural Products Applications and Research Technologies, Department of Chemistry & Biochemistry, Stephenson Life Science Research Center, University of Oklahoma, Norman, Oklahoma 73019, United States.

Natural Products Support Group, Leidos Biomedical Research, Inc., Frederick National Laboratory for Cancer Research, Frederick, Maryland 21702, United States.

出版信息

J Nat Prod. 2020 Mar 27;83(3):584-592. doi: 10.1021/acs.jnatprod.9b00896. Epub 2020 Feb 27.

Abstract

An extract prepared from the fruit of exhibited differential cytotoxic effects when tested in a panel of pediatric cancer cell lines [Ewing sarcoma (A-673), rhabdomyosarcoma (SJCRH30), medulloblastoma (D283), and hepatoblastoma (Hep293TT)]. Bioassay-guided fractionation led to the purification of five new hydroquinone-based metabolites, choerosponols A-E (-), bearing unsaturated hydrocarbon chains. The structures of the natural products were determined using a combination of 1D and 2D NMR, HRESIMS, ECD spectroscopy, and Mosher ester analyses. The purified compounds were evaluated for their antiproliferative and cytotoxic activities, revealing that , which contains a benzofuran moiety, exhibited over 50-fold selective antiproliferative activity against Ewing sarcoma and medulloblastoma cells with growth inhibitory (GI) values of 0.19 and 0.07 μM, respectively. The effects of were evaluated in a larger panel of cancer cell lines, and these data were used in turn to interrogate the Project Achilles cancer dependency database, leading to the identification of the MCT1 transporter as a functional target of . These data highlight the utility of publicly available cancer dependency databases such as Project Achilles to facilitate the identification of the mechanisms of action of compounds with selective activities among cancer cell lines, which can be a major challenge in natural products drug discovery.

摘要

从 果实中提取的一种提取物在一系列儿科癌细胞系(尤因肉瘤(A-673)、横纹肌肉瘤(SJCRH30)、髓母细胞瘤(D283)和肝细胞瘤(Hep293TT))中进行测试时表现出不同的细胞毒性作用。生物测定指导的分级分离导致了五种新的基于氢醌的代谢物,choerosponols A-E(-)的纯化,它们具有不饱和烃链。使用 1D 和 2D NMR、HRESIMS、ECD 光谱和 Mosher 酯分析的组合确定了天然产物的结构。评估了纯化化合物的抗增殖和细胞毒性活性,结果表明,含有苯并呋喃部分的 对尤文肉瘤和髓母细胞瘤细胞具有超过 50 倍的选择性抗增殖活性,生长抑制(GI)值分别为 0.19 和 0.07 μM。进一步评估了 在更大的癌细胞系面板中进行评估,这些数据又用于询问 Project Achilles 癌症依赖数据库,从而确定 MCT1 转运体是 的功能靶点。这些数据强调了像 Project Achilles 这样的公开可用的癌症依赖数据库在促进具有选择性活性的化合物的作用机制的识别方面的效用,这在天然产物药物发现中是一个主要挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d092/7864215/2fc8291899c9/nihms-1655858-f0002.jpg

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