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Novel non-covalent LSD1 inhibitors endowed with anticancer effects in leukemia and solid tumor cellular models

Authors :
Martina Menna
Francesco Fiorentino
Biagina Marrocco
Alessia Lucidi
Stefano Tomassi
Domenica Cilli
Mauro Romanenghi
Matteo Cassandri
Silvia Pomella
Michele Pezzella
Donatella Del Bufalo
Mohammad Salik Zeya Ansari
Nevena Tomašević
Milan Mladenović
Monica Viviano
Gianluca Sbardella
Rossella Rota
Daniela Trisciuoglio
Saverio Minucci
Andrea Mattevi
Dante Rotili
Antonello Mai
Menna, Martina
Fiorentino, Francesco
Marrocco, Biagina
Lucidi, Alessia
Tomassi, Stefano
Cilli, Domenica
Romanenghi, Mauro
Cassandri, Matteo
Pomella, Silvia
Pezzella, Michele
Del Bufalo, Donatella
Zeya Ansari, Mohammad Salik
Tomašević, Nevena
Mladenović, Milan
Viviano, Monica
Sbardella, Gianluca
Rota, Rossella
Trisciuoglio, Daniela
Minucci, Saverio
Mattevi, Andrea
Rotili, Dante
Mai, Antonello
Publication Year :
2022

Abstract

LSD1 is a histone lysine demethylase proposed as therapeutic target in cancer. Chemical modifications applied at C2, C4 and/or C7 positions of the quinazoline core of the previously reported dual LSD1/G9a inhibitor 1 led to a series of non-covalent, highly active, and selective LSD1 inhibitors (2-4 and 6-30) and to the dual LSD1/G9a inhibitor 5 that was more potent than 1 against LSD1. In THP-1 and MV4-11 leukemic cells, the most potent compounds (7, 8, and 29) showed antiproliferative effects at sub-micromolar level without significant toxicity at 1μM in non-cancer AHH-1cells. In MV4-11cells, the new derivatives increased the levels of the LSD1 histone mark H3K4me2 and induced the re-expression of the CD86 gene silenced by LSD1, thereby confirming the inhibition of LSD1 at cellular level. In breast MDA-MB-231 as well as in rhabdomyosarcoma RD and RH30cells, taken as examples of solid tumors, the same compounds displayed cell growth arrest in the same IC50 range, highlighting a crucial anticancer role for LSD1 inhibition and suggesting no added value for the simultaneous G9a inhibition in these tumor cell lines.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....174de47d6b2349a453af568efe1b2572