| Literature DB >> 30448418 |
Margherita Brindisi1, Cristina Ulivieri2, Gloria Alfano1, Sandra Gemma1, Francisco de Asís Balaguer3, Tuhina Khan4, Alessandro Grillo1, Giulia Chemi1, Grégory Menchon5, Andrea E Prota5, Natacha Olieric5, Daniel Lucena-Agell3, Isabel Barasoain3, J Fernando Diaz3, Angela Nebbioso6, Mariarosaria Conte7, Ludovica Lopresti2, Stefania Magnano8, Rebecca Amet8, Paula Kinsella8, Daniela M Zisterer8, Ola Ibrahim9, Jeff O'Sullivan9, Lucia Morbidelli2, Roberta Spaccapelo10, Cosima Baldari2, Stefania Butini11, Ettore Novellino12, Giuseppe Campiani13, Lucia Altucci6, Michel O Steinmetz5, Simone Brogi14.
Abstract
Microtubule-targeting agents (MTAs) are a class of clinically successful anti-cancer drugs. The emergence of multidrug resistance to MTAs imposes the need for developing new MTAs endowed with diverse mechanistic properties. Benzoxazepines were recently identified as a novel class of MTAs. These anticancer agents were thoroughly characterized for their antitumor activity, although, their exact mechanism of action remained elusive. Combining chemical, biochemical, cellular, bioinformatics and structural efforts we developed improved pyrrolonaphthoxazepines antitumor agents and their mode of action at the molecular level was elucidated. Compound 6j, one of the most potent analogues, was confirmed by X-ray as a colchicine-site MTA. A comprehensive structural investigation was performed for a complete elucidation of the structure-activity relationships. Selected pyrrolonaphthoxazepines were evaluated for their effects on cell cycle, apoptosis and differentiation in a variety of cancer cells, including multidrug resistant cell lines. Our results define compound 6j as a potentially useful optimized hit for the development of effective compounds for treating drug-resistant tumors.Entities:
Keywords: Antitumor agents; Apoptosis; Microtubule-targeting agent; Molecular modeling; Tubulin; X-ray crystallography
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Year: 2018 PMID: 30448418 DOI: 10.1016/j.ejmech.2018.11.004
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514