Energetics of ligand binding to the DNA minor groove

被引:0
|
作者
Kostjukov, Viktor V. [1 ]
Santiago, Adrian A. Hernandez [2 ]
Rodriguez, Fernando Rojas [2 ]
Castilla, Salvador Rosas [2 ]
Parkinson, John A. [3 ]
Evstigneev, Maxim P. [1 ]
机构
[1] Sevastopol Natl Tech Univ, Dept Phys, UA-99053 Sevastopol, Crimea, Ukraine
[2] Autonomous Univ Puebla, Fac Chem, Puebla 72570, Mexico
[3] Univ Strathclyde, WestCHEM Dept Pure & Appl Chem, Glasgow G1 1XL, Lanark, Scotland
关键词
MOLECULAR-DYNAMICS SIMULATIONS; FREE-ENERGY ANALYSIS; HYDRATION CHANGES; AROMATIC LIGANDS; ELECTROSTATIC CONTRIBUTION; CONFIGURATIONAL ENTROPY; DEPENDENT BINDING; FORCE-FIELD; NETROPSIN; THERMODYNAMICS;
D O I
10.1039/c2cp40182g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In the present work the decomposition of the total Gibbs free energy of ligand-DNA binding onto various physical terms was accomplished for the group of nine DNA minor groove binders (MGB ligands) differing in both structure and charge state. The decomposition protocol includes the analysis of the most complete set of physical factors known to contribute to the complexation process, viz. the net change in the number of degrees of freedom (translational, rotational, vibrations of the chemical bonds and vibrations of the ligand as a whole within the binding site), the conformational entropy, van der Waals, electrostatic and hydrophobic interactions, the polyelectrolyte contribution and the net effect of changes in the number of hydrogen bonds. All of these processes are further decomposed into the interaction with the solvent and the interaction of the ligand with DNA. The principal outcome of the decomposition is the possibility of performing a comparative analysis of the energetic contribution of various physical terms and provide an answer to the question concerning what physical factors stabilize or destabilize the complexes of MGB ligands with DNA.
引用
收藏
页码:5588 / 5600
页数:13
相关论文
共 50 条
  • [1] Chemistry of DNA minor groove binding agents
    Khan, Gul Shahzada
    Shah, Afzal
    Zia-ur-Rehman
    Barker, David
    JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 2012, 115 : 105 - 118
  • [2] Competition of some minor groove binders for a single DNA binding site
    Lah, Jurij
    Carl, Nejc
    Drobnak, Igor
    Sumiga, Bostjan
    Vesnaver, Gorazd
    ACTA CHIMICA SLOVENICA, 2006, 53 (03) : 284 - 291
  • [3] Ranking Ligand Affinity for the DNA Minor Groove by Experiment and Simulation
    Wittayanarakul, Kitiyaporn
    Anthony, Nahoum G.
    Treesuwan, Witcha
    Hannongbua, Supa
    Alniss, Hasan
    Khalaf, Abedawn I.
    Suckling, Colin J.
    Parkinson, John A.
    Mackay, Simon P.
    ACS MEDICINAL CHEMISTRY LETTERS, 2010, 1 (08): : 376 - 380
  • [4] ANTINEOPLASTIC DNA-BINDING COMPOUNDS: INTERCALATING AND MINOR GROOVE BINDING DRUGS
    Miskovic, Katarina
    Bujak, Maro
    Baus Loncar, Mirela
    Glavas-Obrovac, Ljubica
    ARHIV ZA HIGIJENU RADA I TOKSIKOLOGIJU-ARCHIVES OF INDUSTRIAL HYGIENE AND TOXICOLOGY, 2013, 64 (04): : 593 - 602
  • [5] Entropically driven binding of Camptothecin in the minor groove of salmon testes DNA
    Yanthan, Senchumbeni
    Rupreo, Vibeizonuo
    Bhattacharyya, Jhimli
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2024, 282
  • [6] Rationalising sequence selection by ligand assemblies in the DNA minor groove: the case for thiazotropsin A
    Alniss, Hasan Y.
    Anthony, Nahoum G.
    Khalaf, Abedawn I.
    Mackay, Simon P.
    Suckling, Colin J.
    Waigh, Roger D.
    Wheate, Nial J.
    Parkinson, John A.
    CHEMICAL SCIENCE, 2012, 3 (03) : 711 - 722
  • [7] Monovalent Cat-ion Binding in the Minor Groove of DNA A-Tracts
    Dong, Qian
    Stellwagen, Earle
    Stellwagen, Nancy C.
    BIOCHEMISTRY, 2009, 48 (05) : 1047 - 1055
  • [8] Minor groove dimeric bisbenzimidazoles inhibit in vitro DNA binding to eukaryotic DNA topoisomerase I
    Susova, O. Yu.
    Ivanov, A. A.
    Ruiz, S. S. Morales
    Lesovaya, E. A.
    Gromyko, A. V.
    Streltsov, S. A.
    Zhuze, A. L.
    BIOCHEMISTRY-MOSCOW, 2010, 75 (06) : 695 - 701
  • [9] A DNA intercalation methodology for an efficient prediction of ligand binding pose and energetics
    Soni, Anjali
    Khurana, Pooja
    Singh, Tanya
    Jayaram, B.
    BIOINFORMATICS, 2017, 33 (10) : 1488 - 1496
  • [10] Thermodynamics of DNA Minor Groove Binders
    Alniss, Hasan Y.
    JOURNAL OF MEDICINAL CHEMISTRY, 2019, 62 (02) : 385 - 402