化学
细胞毒性
前药
内质网
生物化学
对接(动物)
酶
蛋白酶体
立体化学
组合化学
体外
医学
护理部
作者
Margaux Bossuat,Pauline Rullière,Nadège Preuilh,António Peixoto,Etienne Joly,Jean-Guillaume Gomez,Maroua Bourkhis,Frédéric Rodriguez,Fernanda Aguiar Gonçalves,Isabelle Fabing,Hafida Gaspard,Vania Bernardes‐Génisson,Valérie Maraval,Stéphanie Ballereau,Rémi Chauvin,Sébastien Britton,Yves Génisson
标识
DOI:10.1021/acs.jmedchem.3c00859
摘要
A series of 25 chiral anti-cancer lipidic alkynylcarbinols (LACs) were devised by introducing an (hetero)aromatic ring between the aliphatic chain and the dialkynylcarbinol warhead. The resulting phenyl-dialkynylcarbinols (PACs) exhibit enhanced stability, while retaining cytotoxicity against HCT116 and U2OS cell lines with IC50 down to 40 nM for resolved eutomers. A clickable probe was used to confirm the PAC prodrug behavior: upon enantiospecific bio-oxidation of the carbinol by the HSD17B11 short-chain dehydrogenase/reductase (SDR), the resulting ynones covalently modify cellular proteins, leading to endoplasmic reticulum stress, ubiquitin–proteasome system inhibition, and apoptosis. Insights into the design of LAC prodrugs specifically bioactivated by HSD17B11 vs its paralogue HSD17B13 were obtained. The HSD17B11/HSD17B13-dependent cytotoxicity of PACs was exploited to develop a cellular assay to identify specific inhibitors of these enzymes. A docking study was performed with the HSD17B11 AlphaFold model, providing a molecular basis of the SDR substrates mimicry by PACs. The safety profile of a representative PAC was established in mice.
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