Literature DB >> 28785893

Binding of anticancer drug daunomycin to a TGGGGT G-quadruplex DNA probed by all-atom molecular dynamics simulations: additional pure groove binding mode and implications on designing more selective G-quadruplex ligands.

Zhanhang Shen1, Kelly A Mulholland2, Yujun Zheng3, Chun Wu4.   

Abstract

DNA G-quadruplex structures are emerging cancer-specific targets for chemotherapeutics. Ligands that bind to and stabilize DNA G-quadruplexes have the potential to be anti-cancer drugs. Lack of binding selectivity to DNA G-quadruplex over DNA duplex remains a major challenge when attempting to develop G-quadruplex ligands into successful anti-cancer drugs. Thorough understanding of the binding nature of existing non-selective ligands that bind to both DNA quadruplex and DNA duplex will help to address this challenge. Daunomycin and doxorubicin, two commonly used anticancer drugs, are examples of non-selective DNA ligands. In this study, we extended our early all-atom binding simulation studies between doxorubicin and a DNA duplex (d(CGATCG)2) to probe the binding between daunomycin and a parallel DNA quadruplex (d(TGGGGT)4) and DNA duplex. In addition to the end stacking mode, which mimics the mode in the crystal structure, a pure groove binding mode was observed in our free binding simulations. The dynamic and energetic properties of these two binding modes are thoroughly examined, and a detailed comparison is made between DNA quadruplex binding modes and DNA duplex binding modes. Implications on the design of more selective DNA quadruplex ligands are also discussed. Graphical abstract Top stacking and groov binding modes from the MD simulations.

Entities:  

Keywords:  DNA quadruplex; Daunomycin; Molecular dynamics simulation

Mesh:

Substances:

Year:  2017        PMID: 28785893     DOI: 10.1007/s00894-017-3417-6

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  60 in total

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3.  Intercalation of daunomycin into stacked DNA base pairs. DFT study of an anticancer drug.

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4.  Assessing the performance of MM/PBSA and MM/GBSA methods. 3. The impact of force fields and ligand charge models.

Authors:  Lei Xu; Huiyong Sun; Youyong Li; Junmei Wang; Tingjun Hou
Journal:  J Phys Chem B       Date:  2013-07-08       Impact factor: 2.991

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Authors:  N S Il'inskiĭ; A M Varizhuk; A D Beniaminov; M A Puzanov; A K Shchelkina; D N Kaliuzhnyĭ
Journal:  Mol Biol (Mosk)       Date:  2014 Nov-Dec

6.  Binding modes of a core-extended metalloporphyrin to human telomeric DNA G-quadruplexes.

Authors:  Jenifer Rubio-Magnieto; Florent Di Meo; Mamadou Lo; Cécile Delcourt; Sébastien Clément; Patrick Norman; Sébastien Richeter; Mathieu Linares; Mathieu Surin
Journal:  Org Biomol Chem       Date:  2015-02-28       Impact factor: 3.876

7.  Early stage intercalation of doxorubicin to DNA fragments observed in molecular dynamics binding simulations.

Authors:  Hongxing Lei; Xiaofeng Wang; Chun Wu
Journal:  J Mol Graph Model       Date:  2012-06-13       Impact factor: 2.518

8.  Assessing the performance of MM/PBSA and MM/GBSA methods. 4. Accuracies of MM/PBSA and MM/GBSA methodologies evaluated by various simulation protocols using PDBbind data set.

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Journal:  Phys Chem Chem Phys       Date:  2014-08-21       Impact factor: 3.676

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Journal:  Nat Rev Drug Discov       Date:  2011-04       Impact factor: 84.694

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  2 in total

1.  Loading of DOX into a tetrahedral DNA nanostructure: the corner does matter.

Authors:  Yao Xu; Shu-Wei Huang; Yu-Qiang Ma; Hong-Ming Ding
Journal:  Nanoscale Adv       Date:  2021-12-07

2.  Molecular Recognition of Parallel G-quadruplex [d-(TTGGGGT)]₄ Containing Tetrahymena Telomeric DNA Sequence by Anticancer Drug Daunomycin: NMR-Based Structure and Thermal Stability.

Authors:  Ritu Barthwal; Zia Tariq
Journal:  Molecules       Date:  2018-09-05       Impact factor: 4.411

  2 in total

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