Literature DB >> 11825074

Dicopper(II) complexes of H-BPMP-type ligands: pH-induced changes of redox, spectroscopic ((19)F NMR studies of fluorinated complexes), structural properties, and catecholase activities.

Catherine Belle1, C Beguin, I Gautier-Luneau, S Hamman, C Philouze, J L Pierre, F Thomas, S Torelli, E Saint-Aman, M Bonin.   

Abstract

Substitution of the methyl group from the H-BPMP (HL(CH)3) ligand (2,6-bis[(bis(2-pyridylmethyl)amino)methyl]-4-methylphenol) by electron withdrawing (F or CF(3)) or electron donating (OCH(3)) groups afforded a series of dinucleating ligand (HL(OCH)3, HL(F), HL(CF)3), allowing one to understand the changes in the properties of the corresponding dicopper complexes. Dinuclear Cu(II) complexes have been synthesized and characterized by spectroscopic (UV-vis, EPR, (1)H NMR) as well as electrochemical techniques and, in some cases, by single-crystal X-ray diffraction: [Cu(2)(L(OCH)3)(muOH)][(ClO(4))(2)].C(4)H(8)O, [Cu(2)(L(F))(muOH)][(ClO(4))(2)], [Cu(2)(L(F))(H(2)O)(2)][(ClO(4))(3)].C(3)D(6)O, and [Cu(2)(L(CF)3)(H(2)O)(2)][(ClO(4))(3)].4H(2)O. Significant differences are observed for the Cu-Cu distance in the two mu-hydroxo complexes (2.980 A (R = OCH(3)) and 2.967 A (R = F)) compared to the two bis aqua complexes (4.084 A (R = F) and 4.222 A (R = CF(3))). The mu-hydroxo and bis aqua complexes are reversibly interconverted upon acid/base titration. In basic medium, new species are reversibly formed and identified as the bis hydroxo complexes except for the complex from HL(CF)3 which is irreversibly transformed near pH = 10. pH-driven interconversions have been studied by UV-vis, EPR, and (1)H NMR, and the corresponding pK are determinated. In addition, with the fluorinated complexes, the changes in the coordination sphere around the copper centers and in their redox states are evidenced by the fluorine chemical shift changes ((19)F NMR). For all the complexes described here, investigations of the catechol oxidase activities (oxidation of 3,5-di-tert-butylcatechol to the corresponding quinone) are of interest in modeling the catecholase enzyme active site and in understanding aspects of structure/reactivity. These studies show the pH-dependence for the catalytic abilities of the complexes, related with changes in the coordination sphere of the metal centers: only the mu-hydroxo complexes from HL(CH)3, HL(F), and HL(OCH)3 exhibit a catecholase activity. Modification on R-substituent induces a drastic effect on the catecholase activity: the presence of an electron donating group on the ligand increases this activity; the reverse effect is observed with an electron withdrawing group.

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Year:  2002        PMID: 11825074     DOI: 10.1021/ic010534g

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  9 in total

1.  Theoretical study of the catalytic mechanism of catechol oxidase.

Authors:  Mireia Güell; Per E M Siegbahn
Journal:  J Biol Inorg Chem       Date:  2007-09-20       Impact factor: 3.358

Review 2.  Aerobic copper-catalyzed organic reactions.

Authors:  Scott E Allen; Ryan R Walvoord; Rosaura Padilla-Salinas; Marisa C Kozlowski
Journal:  Chem Rev       Date:  2013-06-20       Impact factor: 60.622

3.  New copper(II) μ-alkoxo-μ-carboxylato double-bridged complexes as models for the active site of catechol oxidase: synthesis, spectral characterization and DFT calculations.

Authors:  Abhay K Patel; Neetu Patel; R N Patel; Rajendra N Jadeja
Journal:  Heliyon       Date:  2022-05-09

4.  Mechanistic insight into the catechol oxidase activity by a biomimetic dinuclear copper complex.

Authors:  Alessandro Granata; Enrico Monzani; Luigi Casella
Journal:  J Biol Inorg Chem       Date:  2004-09-22       Impact factor: 3.358

5.  (Acetonitrile)[bis-(2-pyridylmeth-yl)amine]bis-(perchlorato)copper(II).

Authors:  Ray J Butcher; Yohannes T Tesema; Teshome B Yisgedu; Yilma Gultneh
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2007-12-21

6.  Effect of Bridging Anions on the Structure and Stability of Phenoxide Bridged Zinc Dipicolylamine Coordination Complexes.

Authors:  Edward J O'Neil; Hua Jiang; Bradley D Smith
Journal:  Supramol Chem       Date:  2013-06-01       Impact factor: 1.688

7.  Structural and spectroscopic studies of a model for catechol oxidase.

Authors:  Sarah J Smith; Christopher J Noble; Randahl C Palmer; Graeme R Hanson; Gerhard Schenk; Lawrence R Gahan; Mark J Riley
Journal:  J Biol Inorg Chem       Date:  2008-05       Impact factor: 3.358

8.  Catechol oxidation promoted by bridging phenoxo moieties in a bis(μ-phenoxo)-bridged dicopper(ii) complex.

Authors:  Debojyoti Mukherjee; Probal Nag; Albert A Shteinman; Sivaranjana Reddy Vennapusa; Ujjwal Mandal; Mainak Mitra
Journal:  RSC Adv       Date:  2021-06-29       Impact factor: 4.036

9.  Isoquinoline thiosemicarbazone displays potent anticancer activity with in vivo efficacy against aggressive leukemias.

Authors:  Daniel L Sun; Soumya Poddar; Roy D Pan; Ethan W Rosser; Evan R Abt; Juno Van Valkenburgh; Thuc M Le; Vincent Lok; Selena P Hernandez; Janet Song; Joanna Li; Aneta Turlik; Xiaohong Chen; Chi-An Cheng; Wei Chen; Christine E Mona; Andreea D Stuparu; Laurent Vergnes; Karen Reue; Robert Damoiseaux; Jeffrey I Zink; Johannes Czernin; Timothy R Donahue; Kendall N Houk; Michael E Jung; Caius G Radu
Journal:  RSC Med Chem       Date:  2020-02-24
  9 in total

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