Binding of 1-substituted carbazolyl-3,4-dihydro-β-carbolines with DNA: Molecular dynamics simulation and MM-GBSA analysis


Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

Molecular Mechanics-Generalized Born-Solvent Accessibility free energy calculations were used to analyse DNA binding affinity of 1-substituted carbazolyl-3,4-dihydro-β-carboline molecules. In this study, DNA structure with sequence of d(CGATCG)2 was used for simulations. 15 ns molecular dynamics simulations of the studied complexes were performed. The calculated free energy was compared with experimental antitumor activity (IC50). The predicted free energies decreased with the increase of IC50 values. It was shown that molecules 1–6 bind to DNA via intercalation mode, while molecules 7–9 bind through groove binding mode. Also, it was found that the vdW energy term (ΔEvdW) and the non-polar desolvation energy (ΔGSA) are the favorable terms for binding energy, whereas net electrostatic energies (ΔEele + ΔGGB) and conformational entropy energy (TΔS) are unfavorable ones.

About the authors

M. Sargolzaei

Department of Chemistry

Author for correspondence.
Email: Mohsen.sargolzaei@gmail.com
Iran, Islamic Republic of, Shahrood

M. Afshar

Materials Simulation Laboratory, Department of Physics

Email: Mohsen.sargolzaei@gmail.com
Iran, Islamic Republic of, Narmak, Tehran, 16345

M. N. Jorabchi

Physikalische und Theoretische Chemie

Email: Mohsen.sargolzaei@gmail.com
Germany, Dr.-Lorenz-Weg 1, Rostock, 18059

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2016 Pleiades Publishing, Inc.