4.7 Article

DNA-Cleavage Induced by New Macrocyclic Schiff base Dinuclear Cu(l) Complexes Containing Pyridyl Pendant Arms

Journal

INORGANIC CHEMISTRY
Volume 48, Issue 23, Pages 11098-11107

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic901488j

Keywords

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Funding

  1. MICINN of Spain [BQU 2005-01834, CTQ2007-67918, CSD2006-0003]
  2. CIRIT Generalitat de Catalunya

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A new series of dinuclear Cu(l) complexes with hexaazamacrocyclic Schiff base ligand containing pyridyl pendant arms has been synthesized and characterized. The solid-state structures of [Cu-2(l)(bsp3py)](CF3SO3)(2) (1(CF3SO3)(2)), [Cu-2-(l)(bsm3py)](SbF6)(2) (2(SbF6)(2)), and [Cu-2(l)(bsp2py)](CF3SO3)(2) (3(CF3SO3)(2)) have been established by single-crystal X-ray diffraction analysis. The geometries of the copper centers in all three cases are almost identical showing a distorted tetrahedral coordination, very close to a trigonal pyramidal arrangement. Interactions of complexes With calf thymus DNA have been investigated by circular dichroism spectroscopy (CD) which suggests that the interaction for each complex is a nonintercalative mode with regard to DNA. The electrophoretic mobility study and the atomic force microscopy (AFM) in the presence of H2O2 reveal a cleavage of pBR322 supercoiled DNA that depends on the nature of the Cu(l) complex used. The most efficient reactivity is observed for complexes 1(CF3SO3)(2) and 2(CF3SO3)(2) whereas complex 3(CF3SO3)(2) displays a lesser reactivity. The different DNA-cleavage activity of complexes 1-3 is due the different electronic factors and complex topology induced by the natures of the different ligands. This work constitutes an example of how small modifications introduced in the macrocyclic backbone of the metal complexes lead to dramatic changes in the nuclease activity.

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