| Literature DB >> 28740727 |
I V Gushchina1, D K Nilov2, A L Zakharenko3, O I Lavrik3,4, V K Švedas1,2.
Abstract
The DNA repair enzyme tyrosyl-DNA phosphodiesterase 1 (Tdp1) represents a potential molecular target for anticancer therapy. A human Tdp1 model has been constructed using the methods of quantum and molecular mechanics, taking into account the ionization states of the amino acid residues in the active site and their interactions with the substrate and competitive inhibitors. The oligonucleotide- and phosphotyrosine-binding cavities important for the inhibitor design have been identified in the enzyme's active site. The developed molecular model allowed us to uncover new Tdp1 inhibitors whose sulfo group is capable of occupying the position of the 3'-phosphate group of the substrate and forming hydrogen bonds with Lys265, Lys495, and other amino acid residues in the phosphotyrosine binding site.Entities:
Keywords: docking; inhibitor; molecular modeling; tyrosyl-DNA phosphodiesterase 1
Year: 2017 PMID: 28740727 PMCID: PMC5509001
Source DB: PubMed Journal: Acta Naturae ISSN: 2075-8251 Impact factor: 1.845
Interactions of the 3’-terminal phosphate group of the substrate with the active site residues in the starting and optimized models of human Tdp1.
| Interaction | Distance (Å) | |
|---|---|---|
| Starting model | Optimized model | |
| PO4-:P ∙∙∙ His263:NE2 | 2.0 | 2.7 |
| PO4-:Obridging ∙∙∙ His493:NE2 | 2.6 | 2.6 |
| PO4-:O ∙∙∙ Lys265:NZ | 2.8 | 2.7 |
| PO4-:O ∙∙∙ Lys495:NZ | 2.8 | 2.7 |
| PO4-:O ∙∙∙ Asn283:ND2 | 3.0 | 2.8 |
| PO4-:O ∙∙∙ Asn516:ND2 | 3.2 | 3.0 |
Compounds selected by virtual screening as human Tdp1 inhibitors.
| Chemical structure | ΔGcalc(kcal/mol) | ΔGrecalc(kcal/mol) | IC50 (μM) | |
|---|---|---|---|---|
| STK370528 |
| -7.5 | -8.7 | 83±24 |
| STK376552 |
| -8.4 | -8.0 | 686±14 |