a Université de Lyon, Université Lyon 1, Faculté de Pharmacie ISPB, EA 4446 Bioactive Molecules and Medicinal Chemistry , SFR Santé Lyon-Est CNRS UMS3453 INSERM US7, Lyon cedex 8 , France.
b Tishreen University, Faculty of Pharmacy, Department of Pharmaceutical Chemistry and Drug Monitoring, Organic Chemistry Laboratory , Boulevard Aleppo , Latakia , Syria.
J Enzyme Inhib Med Chem. 2016;31(sup3):25-32. doi: 10.1080/14756366.2016.1201480. Epub 2016 Jun 30.
Quinones and quinones-like compounds are potential candidates for the inhibition of CDC25 phosphatases. The combination of MALDI-MS analyses and biological studies was used to develop a rapid screening of a targeted library of indeno[1,2-b]indoloquinone derivatives. The screening protocol using MALDI-TOFMS and MALDI-FTICRMS highlighted four new promising candidates. Biological investigations showed that only compounds 5c-f inhibited CDC25A and -C phosphatases, with IC values around the micromolar range. The direct use of a screening method based on MALDI-MS technology allowed achieving fast scaffold identification of a new class of potent inhibitors of CDC25 phosphatases. These four molecules appeared as novel molecules of a new class of CDC25 inhibitors. Assessment of 5c-e in an MRC5 proliferation assay provided an early indicator of toxicity to mammalian cells. Compound 5d seems the most promising hit for developing new CDC25 inhibitors.
醌类和醌类化合物是抑制 CDC25 磷酸酶的潜在候选物。采用 MALDI-MS 分析和生物学研究相结合的方法,对吲[1,2-b]吲哚并喹啉衍生物的靶向文库进行了快速筛选。使用 MALDI-TOFMS 和 MALDI-FTICRMS 的筛选方案突出了四个有前途的新候选物。生物学研究表明,只有化合物 5c-f 抑制 CDC25A 和 -C 磷酸酶,IC 值在微摩尔范围内。直接使用基于 MALDI-MS 技术的筛选方法可以快速鉴定出一类新的 CDC25 磷酸酶强效抑制剂的骨架。这四个分子似乎是一类新的 CDC25 抑制剂的新型分子。在 MRC5 增殖测定中评估 5c-e 提供了对哺乳动物细胞毒性的早期指标。化合物 5d 似乎是开发新型 CDC25 抑制剂最有前途的候选物。