Literature DB >> 23244447

Novel G-quadruplex stabilizing agents: in-silico approach and dynamics.

Rajiv Kumar Kar1, Priyanka Suryadevara, Jagannath Jana, Anirban Bhunia, Subhrangsu Chatterjee.   

Abstract

The stabilization of overhang G-rich repetitive DNA units at the 3'-end of telomeres, which are well known to form functionally important G-quadruplex structures, is a current goal in designing novel anticancer drugs. In the present study, we have undertaken an in silico approach by molecular docking using a small molecule library to find potential G-quadruplex stabilizing agents. Two molecules, A, [N'1-imino(2-pyridyl)methyl-3,4,5-trimethoxybenzene-1-carbohydrazide] and B, [(3-[4-({[3-({4-[(2cyanoethyl)(methyl)amino]benzylidene}amino)propyl]imino}methyl)(methyl) anilino]propanenitrile)], that had good docking scores have been investigated for interaction with G-quadruplexes in a Molecular Dynamics simulation study. Fluorescence spectroscopy of G-quadruplexes bound to the screened molecules A and B was used to experimentally validate the theoretical results. The binding of ligands A and B to G-quadruplexes resulted in blue shifts of 10-18 nm, respectively, in the fluorescence emission spectra of the G-quadruplexes, demonstrating that both molecules bind to the G-face of the quadruplex. The same experiment was performed for the complexation of these small molecules with a G-rich DNA duplex, [Formula: see text]. Interestingly, no blue shift was observed in the fluorescence emission spectra of the DNA duplex in the presence of these small molecules. Thus, these findings indicated that these ligands very selectively bind to G-quadruplexes instead of the duplex DNA. In addition, a one-dimensional water ligand observed via a gradient spectroscopy Nuclear Magnetic Resonance (NMR) experiment showed that both molecules bound to the 23-mer G-quadruplex DNA. The molecular properties of the ligand-quadruplex complex have been analyzed with the help of the Adaptive Poisson-Boltzmann Solver, revealing that electrostatics govern the binding of the small molecules to G-quadruplexes. Both molecules were investigated in detail using solvation free energy calculations and Absorption, Distribution, Metabolism, Elimination and Toxicity (ADMET) predictions, which provide insight into lead optimization for designing G-quadruplex stabilizing agents; therefore, these molecules have potential as new therapeutic agents.

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Year:  2012        PMID: 23244447     DOI: 10.1080/07391102.2012.742246

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  6 in total

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2.  Expedient synthesis of the pentasaccharide repeating unit of the O-antigen of Escherichia coli O86 and its conformational analysis.

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Review 3.  G-quadruplex virtual drug screening: A review.

Authors:  Robert C Monsen; John O Trent
Journal:  Biochimie       Date:  2018-06-30       Impact factor: 4.079

Review 4.  G-quadruplexes in viruses: function and potential therapeutic applications.

Authors:  Mathieu Métifiot; Samir Amrane; Simon Litvak; Marie-Line Andreola
Journal:  Nucleic Acids Res       Date:  2014-10-20       Impact factor: 16.971

5.  LINCRNA00273 promotes cancer metastasis and its G-Quadruplex promoter can serve as a novel target to inhibit cancer invasiveness.

Authors:  Samarjit Jana; Jagannath Jana; Kartick Patra; Soma Mondal; Jyotsna Bhat; Arnab Sarkar; Pallabi Sengupta; Anindya Biswas; Meghomukta Mukherjee; Satya Prakash Tripathi; Rahul Gangwal; Joyita Hazra; Abhay T Sangamwar; Gopeswar Mukherjee; Shamee Bhattacharjee; Deba Prasad Mandal; Subhrangsu Chatterjee
Journal:  Oncotarget       Date:  2017-11-17

6.  Combining Electrospray Mass Spectrometry (ESI-MS) and Computational Techniques in the Assessment of G-Quadruplex Ligands: A Hybrid Approach to Optimize Hit Discovery.

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Journal:  J Med Chem       Date:  2021-09-12       Impact factor: 7.446

  6 in total

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