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Interfering with HuR-RNA Interaction: Design, Synthesis and Biological Characterization of Tanshinone Mimics as Novel, Effective HuR Inhibitors

Authors :
Luciana Marinelli
Preet Lal
Emiliano Biasini
Chiara Zucal
Alessandro Provenzani
Vito Giuseppe D'Agostino
Pierfausto Seneci
Vanessa Baj
Natthakan Thongon
Saioa R. Elezgarai
Danilo Di Maio
Linda Cerofolini
Claudio Luchinat
Leonardo Manzoni
Ettore Novellino
Marta Brambilla
Marco Fragai
Marco Miceli
Isabelle Bonomo
Manzoni, Leonardo
Zucal, Chiara
Maio, Danilo Di
D'Agostino, Vito G
Thongon, Natthakan
Bonomo, Isabelle
Lal, Preet
Miceli, Marco
Baj, Vanessa
Brambilla, Marta
Cerofolini, Linda
Elezgarai, Saioa
Biasini, Emiliano
Luchinat, Claudio
Novellino, Ettore
Fragai, Marco
Marinelli, Luciana
Provenzani, Alessandro
Seneci, Pierfausto
Source :
Journal of medicinal chemistry 61 (2018): 1483–1498. doi:10.1021/acs.jmedchem.7b01176, info:cnr-pdr/source/autori:Manzoni L.; Zucal C.; Maio D.D.; D'Agostino V.G.; Thongon N.; Bonomo I.; Lal P.; Miceli M.; Baj V.; Brambilla M.; Cerofolini L.; Elezgarai S.; Biasini E.; Luchinat C.; Novellino E.; Fragai M.; Marinelli L.; Provenzani A.; Seneci P./titolo:Interfering with HuR-RNA Interaction: Design, Synthesis and Biological Characterization of Tanshinone Mimics as Novel, Effective HuR Inhibitors/doi:10.1021%2Facs.jmedchem.7b01176/rivista:Journal of medicinal chemistry/anno:2018/pagina_da:1483/pagina_a:1498/intervallo_pagine:1483–1498/volume:61
Publication Year :
2018

Abstract

The human antigen R (HuR) is an RNA-binding protein known to modulate the expression of target mRNA coding for proteins involved in inflammation, tumorigenesis, and stress responses and is a valuable drug target. We previously found that dihydrotanshinone-I (DHTS, 1) prevents the association of HuR with its RNA substrate, thus imparing its function. Herein, inspired by DHTS structure, we designed and synthesized an array of ortho-quinones (tanshinone mimics) using a function-oriented synthetic approach. Among others, compound 6a and 6n turned out to be more effective than 1, showing a nanomolar Ki and disrupting HuR binding to RNA in cells. A combined approach of NMR titration and molecular dynamics (MD) simulations suggests that 6a stabilizes HuR in a peculiar closed conformation, which is incompatible with RNA binding. Alpha screen and RNA-electrophoretic mobility shift assays (REMSA) data on newly synthesized compounds allowed, for the first time, the generation of structure activity relationships (SARs), thus providing a solid background for the generation of highly effective HuR disruptors.

Details

ISSN :
15204804
Volume :
61
Issue :
4
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry
Accession number :
edsair.doi.dedup.....909b50e95821430ff362c6edb7f96dee
Full Text :
https://doi.org/10.1021/acs.jmedchem.7b01176