Synthesis and biologic evaluation of diethylbenzaldehyde analogues to probe functional activity of aldehyde dehydrogenase activity in cancer

Cancer Research(2018)

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摘要
The human aldehyde dehydrogenases (ALDHs) play a major role in detoxifying highly reactive aldehydes into carboxylic acids. Deregulation of ALDHs has implications in a number of cancers. They play an important role as a cancer stem cell (CSC) marker due to high activity found in CSCs, while high expression is also known to lead to resistance to chemotherapeutic drugs. Although the exact roles of ALDHs are not fully understood, emerging information indicates several isoforms from the ALDH1 family, ALDH3A1 and ALDH7A1, play key roles in several cancer types. To probe the role of ALDH functional activity, we here report on the perturbation of ALDH expression and function using diethylbenzaldehyde (DEAB) analogues. The H1299 lung cancer cell line has negligible amount of ALDH activity, and ALDH-expressing variants were used to study the novel DEAB analogues. H1299 wild-type cells (WT) and cells expressing RFP were used as controls. Expression of the proteins was confirmed by Western blots and ALDH enzymatic activity assay. We used cell culture, colorimetric MTT assay, aldefluor assay and in vitro treatment with DEAB analogues. ALDH-expressing lysates were used to obtain biochemical inhibition data of the DEAB analogues using propionaldehyde as substrate with NAD + as a co-factor. DEAB has been shown to covalently bind to ALDH7A1, and computational modeling was employed to understand how chemical modifications to DEAB affected the binding mode. Selected ALDH-affinic probe compounds were tested in a panel of colon, lung and prostate cancer cell lines including docetaxel-resistant variant and patient samples to investigate if DEAB analogues had an effect on cell viability as single agents or in combination with docetaxel. In conclusion, the novel DEAB analogues aid us to understand ALDH functional activity and provide a platform for discovering more selective ALDH inhibitors Citation Format: Ali Ibrahim, Maria Sadiq, Daniela Presa, Ioannis Ntafoulis, Ahmad Alkawi, Fiona Frame, Norman J. Maitland, Zoe Cournia, Paul M. Loadman, Jan Moreb, Klaus Pors. Synthesis and biologic evaluation of diethylbenzaldehyde analogues to probe functional activity of aldehyde dehydrogenase activity in cancer [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2018; 2018 Apr 14-18; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2018;78(13 Suppl):Abstract nr 1662.
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Cancer Cell Metabolism
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