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Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1

Authors :
Olga D. Zakharova
A.A. Malakhova
Nariman F. Salakhutdinov
Jóhannes Reynisson
Alexandra L. Zakharenko
Sergey P. Medvedev
Alexander Yu. Sidorenko
Irina V. Il'ina
Dina V. Korchagina
Suren M. Zakian
Raina Chand
N.S. Li-Zhulanov
Nadezhda S Dyrkheeva
Konstantin P. Volcho
Arina A Chepanova
Ekaterina S Ilina
Daniel M Ayine-Tora
Olga I. Lavrik
Source :
Molecules, Vol 25, Iss 3496, p 3496 (2020), Molecules, Volume 25, Issue 15
Publication Year :
2020
Publisher :
MDPI AG, 2020.

Abstract

Two novel structural types of tyrosyl-DNA phosphodiesterase 1 (TDP1) inhibitors with hexahydroisobenzofuran 11 and 3-oxabicyclo [3.3.1]nonane 12 scaffolds were discovered. These monoterpene-derived compounds were synthesized through preliminary isomerization of (+)-3-carene to (+)-2-carene followed by reaction with heteroaromatic aldehydes. All the compounds inhibit the TDP1 enzyme at micro- and submicromolar levels, with the most potent compound having an IC50 value of 0.65 &mu<br />M. TDP1 is an important DNA repair enzyme and a promising target for the development of new chemosensitizing agents. A panel of isogenic clones of the HEK293FT cell line knockout for the TDP1 gene was created using the CRISPR-Cas9 system. Cytotoxic effects of topotecan (Tpc) and non-cytotoxic compounds of the new structures were investigated separately and jointly in the TDP1 gene knockout cells. For two TDP1 inhibitors, 11h and 12k, a synergistic effect was observed with Tpc in the HEK293FT cells but was not found in TDP1 &minus<br />/&minus<br />cells. Thus, it is likely that the synergistic effect is caused by inhibition of TDP1. Synergy was also found for 11h in other cancer cell lines. Thus, sensitizing cancer cells using a non-cytotoxic drug can enhance the efficacy of currently used pharmaceuticals and, concomitantly, reduce toxic side effects.

Details

Language :
English
ISSN :
14203049
Volume :
25
Issue :
3496
Database :
OpenAIRE
Journal :
Molecules
Accession number :
edsair.doi.dedup.....c810589ef13fcd53936bd58402cd827d