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Properly Substituted Cyclic Bis-(2-bromobenzylidene) Compounds Behaved as Dual p300/CARM1 Inhibitors and Induced Apoptosis in Cancer Cells

Authors :
Elisabetta Di Bello
Andrea Maria Plateroti
Rossella Fioravanti
Mariarosaria Conte
Ettore Novellino
Stefano Tomassi
Annalisa Romanelli
Rosaria Benedetti
Lucia Altucci
Antonello Mai
Sergio Valente
Fioravanti, Rossella
Tomassi, Stefano
Di Bello, Elisabetta
Romanelli, Annalisa
Maria Plateroti, Andrea
Benedetti, Rosaria
Conte, Mariarosaria
Novellino, Ettore
Altucci, Lucia
Valente, Sergio
Mai, Antonello
Plateroti, Andrea Maria
Source :
Molecules, Molecules, Vol 25, Iss 3122, p 3122 (2020), Volume 25, Issue 14
Publication Year :
2020
Publisher :
MDPI AG, 2020.

Abstract

Bis-(3-bromo-4-hydroxy)benzylidene cyclic compounds have been reported by us as epigenetic multiple ligands, but different substitutions at the two wings provided analogues with selective inhibition. Since the 1-benzyl-3,5-bis((E)-3-bromobenzylidene)piperidin-4-one 3 displayed dual p300/EZH2 inhibition joined to cancer-selective cell death in a panel of tumor cells and in in vivo xenograft models, we prepared a series of bis((E)-2-bromobenzylidene) cyclic compounds 4a&ndash<br />n to test in biochemical (p300, PCAF, SIRT1/2, EZH2, and CARM1) and cellular (NB4, U937, MCF-7, SH-SY5Y) assays. The majority of 4a&ndash<br />n exhibited potent dual p300 and CARM1 inhibition, sometimes reaching the submicromolar level, and induction of apoptosis mainly in the tested leukemia cell lines. The most effective compounds in both enzyme and cellular assays carried a 4-piperidone moiety and a methyl (4d), benzyl (4e), or acyl (4k&ndash<br />m) substituent at N1 position. Elongation of the benzyl portion to 2-phenylethyl (4f) and 3-phenylpropyl (4g) decreased the potency of compounds at both the enzymatic and cellular levels, but the activity was promptly restored by introduction of a ketone group into the phenylalkyl substituent (4h&ndash<br />j). Western blot analyses performed in NB4 and MCF-7 cells on selected compounds confirmed their inhibition of p300 and CARM1 through decrease of the levels of acetyl-H3 and acetyl-H4, marks for p300 inhibition, and of H3R17me2, mark for CARM1 inhibition.

Details

ISSN :
14203049
Volume :
25
Database :
OpenAIRE
Journal :
Molecules
Accession number :
edsair.doi.dedup.....1aa8d8a409b29e68a5410e57665667b5
Full Text :
https://doi.org/10.3390/molecules25143122