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通过 P450 介导的化学酶合成生成的小白菊内酯类似物的抗癌活性分析。

Anticancer activity profiling of parthenolide analogs generated via P450-mediated chemoenzymatic synthesis.

机构信息

Department of Chemistry, University of Rochester, Rochester, NY 14627, United States.

Department of Medicine Hematology/Oncology Division, School of Medicine and Dentistry, University of Rochester, Rochester, NY 14627, United States.

出版信息

Bioorg Med Chem. 2018 Apr 1;26(7):1365-1373. doi: 10.1016/j.bmc.2017.08.009. Epub 2017 Aug 8.

Abstract

The plant-derived sesquiterpene lactone parthenolide (PTL) was recently found to possess promising anticancer activity but elaboration of this natural product scaffold for optimization of its pharmacological properties has proven challenging via available chemical methods. In this work, P450-catalyzed C-H hydroxylation of positions C9 and C14 in PTL was coupled to carbamoylation chemistry to yield a panel of novel carbamate-based PTL analogs ('parthenologs'). These compounds, along with a series of other C9- and C14-functionalized parthenologs obtained via O-H acylation, alkylation, and metal-catalyzed carbene insertion, were profiled for their cytotoxicity against a diverse panel of human cancer cell lines. These studies led to the discovery of several parthenologs with significantly improved anticancer activity (2-14-fold) compared to the parent molecule. Most interestingly, two PTL analogs with high cytotoxicity (LC∼1-3μM) against T cell leukemia (Jurkat), mantle cell lymphoma (JeKo-1), and adenocarcinoma (HeLa) cells as well as a carbamate derivative with potent activity (LC=0.6μM) against neuroblastoma cells (SK-N-MC) were obtained. In addition, these analyses resulted in the identification of parthenologs featuring both a broad spectrum and tumor cell-specific anticancer activity profile, thus providing valuable probes for the future investigation of biomolecular targets that can affect cell viability across multiple as well as specific types of human cancers. Altogether, these results highlight the potential of P450-mediated chemoenzymatic C-H functionalization toward tuning and improving the anticancer activity of the natural product parthenolide.

摘要

植物生源的倍半萜内酯(PTL)最近被发现具有很有前途的抗癌活性,但通过现有的化学方法,对其进行结构优化以改善其药理性质的研究证明是具有挑战性的。在这项工作中,将 PTL 中 C9 和 C14 位置的 P450 催化 C-H 羟化与氨甲酰化化学偶联,得到了一组新型的基于氨基甲酸酯的 PTL 类似物(“parthenologs”)。这些化合物以及通过 O-H 酰化、烷基化和金属催化卡宾插入获得的一系列其他 C9 和 C14 功能化的 parthenologs,被用于评估其对多种人类癌细胞系的细胞毒性。这些研究发现了一些与母体分子相比具有显著改善的抗癌活性(2-14 倍)的 parthenologs。最有趣的是,两种对 T 细胞白血病(Jurkat)、套细胞淋巴瘤(JeKo-1)和腺癌(HeLa)细胞具有高细胞毒性(LC∼1-3μM)的 PTL 类似物以及对神经母细胞瘤细胞(SK-N-MC)具有强大活性的氨基甲酸酯衍生物(LC=0.6μM)被获得。此外,这些分析确定了具有广谱和肿瘤细胞特异性抗癌活性特征的 parthenologs,因此为未来研究可以影响多种和特定类型人类癌症细胞活力的生物分子靶标提供了有价值的探针。总之,这些结果突出了 P450 介导的化学酶促 C-H 功能化在调节和改善天然产物 parthenolide 抗癌活性方面的潜力。

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