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Theoretical studies on pyrimidine substituent derivatives as dual inhibitors of AP-1 and NF-kappaB.

Authors :
Qian L
Liao SY
Huang ZL
Shen Y
Zheng KC
Source :
Journal of molecular modeling [J Mol Model] 2010 Jun; Vol. 16 (6), pp. 1139-50. Date of Electronic Publication: 2009 Nov 27.
Publication Year :
2010

Abstract

Theoretical studies on the three-dimensional (3D) quantitative structure-activity relationship (QSAR) and mechanisms of action of a series of pyrimidine substituent derivatives as dual inhibitors of AP-1 and NF-kappaB were carried out using comparative molecular field analysis (CoMFA) and docking methods. The established 3D-QSAR model exhibits a satisfying statistical quality and prediction ability. Docking results show somewhat lower average values of the flexible and rigid energy scores in the chosen binding sites. The docking analysis offers appropriate orientations and conformations of these compounds at the binding sites to both AP-1 and NF-kappaB in good agreement with the 3D-QSAR model from CoMFA. The combined CoMFA and docking study suggests the following substituent selections: substituent R(2) should be a kind of H-N-thienyl or CH(3)-N-thienyl group; substituent R(5) should be a kind of COO-tBu or COOEt group; and substituent R(4) should be a CH(2)CH(3) or 2-thienyl group. The docking analysis also shows that the binding sites fall just at the joint regions between AP-1 (or NF-kappaB) and DNA, where these compounds can effectively prevent free AP-1 and NF-kappaB from binding to DNA, and this may be the reason that derivatives with pyrimidine substituents have an inhibition function. In addition, a very interesting finding was that the binding sites of both AP-1 and NF-kappaB have a common structural characteristic, thereby providing a reasonable explanation for the dual inhibition functions of these compounds towards both AP-1 and NF-kappaB. These theoretical results help to deepen our understanding of the inhibition mechanism of these pyrimidine substituent derivatives, and will aid in directing further drug-molecular design.

Details

Language :
English
ISSN :
0948-5023
Volume :
16
Issue :
6
Database :
MEDLINE
Journal :
Journal of molecular modeling
Publication Type :
Academic Journal
Accession number :
19943176
Full Text :
https://doi.org/10.1007/s00894-009-0609-8