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      Reaction mechanism of Ru(II) piano-stool complexes: umbrella sampling QM/MM MD study.

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          Abstract

          Biologically relevant interactions of piano-stool ruthenium(II) complexes with ds-DNA are studied in this article by hybrid quantum mechanics-molecular mechanics (QM/MM) computational technique. The whole reaction mechanism is divided into three phases: (i) hydration of the [Ru(II) (η(6) -benzene)(en)Cl](+) complex, (ii) monoadduct formation between the resulting aqua-Ru(II) complex and N7 position of one of the guanines in the ds-DNA oligomer, and (iii) formation of the intrastrand Ru(II) bridge (cross-link) between two adjacent guanines. Free energy profiles of all the reactions are explored by QM/MM MD umbrella sampling approach where the Ru(II) complex and two guanines represent a quantum core, which is described by density functional theory methods. The combined QM/MM scheme is realized by our own software, which was developed to couple several quantum chemical programs (in this study Gaussian 09) and Amber 11 package. Calculated free energy barriers of the both ruthenium hydration and Ru(II)-N7(G) DNA binding process are in good agreement with experimentally measured rate constants. Then, this method was used to study the possibility of cross-link formation. One feasible pathway leading to Ru(II) guanine-guanine cross-link with synchronous releasing of the benzene ligand is predicted. The cross-linking is an exergonic process with the energy barrier lower than for the monoadduct reaction of Ru(II) complex with ds-DNA.

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          Author and article information

          Journal
          J Comput Chem
          Journal of computational chemistry
          1096-987X
          0192-8651
          Jul 15 2014
          : 35
          : 19
          Affiliations
          [1 ] Department of Chemistry, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama, 223-8522, Japan.
          Article
          10.1002/jcc.23639
          24865949
          d9db10bf-1a3f-4cef-843b-2726bb1f4abf
          Copyright © 2014 Wiley Periodicals, Inc.
          History

          amber,density functional theory,ds-DNA,intrastrand cross-link,piano-stool structure,quantum mechanics-molecular mechanics,ruthenium(II) complexes,umbrella integration,umbrella sampling,weighted histogram analysis method

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