Literature DB >> 28972934

Coordination, redox properties and SOD activity of Cu(II) complexes of multihistidine peptides.

Gizella Csire1, Sarolta Timári2, József Asztalos1, Judit Mária Király1, Mariann Kiss1, Katalin Várnagy3.   

Abstract

The results of electrochemical and SOD activity measurements of such copper(II) complexes of terminally protected multihistidine peptides that may mimic the active site of CuZnSOD enzyme are submitted and completed with solution equilibrium studies of some copper(II)-ligand systems. The equilibrium data confirm that the thermodynamic stabilities increase with the increasing number of histidyl residues in the amino acid sequence, the stability order, however, can be finely tuned by the number and quality of amino acids between histidine residues. Based on the cyclic voltammetric studies we concluded that the formal reduction potential values of imidazole nitrogen coordinated complexes decrease with the increasing number of imidazole donor atoms in the coordination sphere. However, the redox parameters of [CuH-1L]+ and [CuH-2L] complexes containing amide nitrogen coordination can be determined as well. All formal potential values of [CuL]2+, [CuH-1L]+ and [CuH-2L] complexes fall in the middle potential range of SOD activity. Finally, after the detailed analysis of species distribution curves based upon the equilibrium data SOD activity of copper(II) containing systems at two pH (pH=6.8 and 7.4) were determined. The imidazole coordinated [CuL]2+ complexes of the multihistidine peptide containing the HXH sequence exhibit the most significant activity, but the presence of amide nitrogen coordinated species with slightly distorted geometry could considerably contribute to the SOD activity.
Copyright © 2017 Elsevier Inc. All rights reserved.

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Year:  2017        PMID: 28972934     DOI: 10.1016/j.jinorgbio.2017.08.033

Source DB:  PubMed          Journal:  J Inorg Biochem        ISSN: 0162-0134            Impact factor:   4.155


  2 in total

1.  The Role of Side Chains in the Fine-Tuning of the Metal-Binding Ability of Multihistidine Peptides.

Authors:  Enikő Székely; Gizella Csire; Bettina Diána Balogh; Judit Zsuzsa Erdei; Judit Mária Király; Judit Kocsi; Júlia Pinkóczy; Katalin Várnagy
Journal:  Molecules       Date:  2022-05-26       Impact factor: 4.927

2.  Rational De Novo Design of a Cu Metalloenzyme for Superoxide Dismutation.

Authors:  Emilie Mathieu; Audrey E Tolbert; Karl J Koebke; Cédric Tard; Olga Iranzo; James E Penner-Hahn; Clotilde Policar; Vincent Pecoraro
Journal:  Chemistry       Date:  2019-12-03       Impact factor: 5.236

  2 in total

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