Model Studies on the Coordination of Copper in Biological Systems. The Deprotonated Peptide Nitrogen as a Potential Binding Site for Copper(II)
- 31 July 1980
- journal article
- research article
- Published by Wiley in European Journal of Biochemistry
- Vol. 109 (2) , 603-612
- https://doi.org/10.1111/j.1432-1033.1980.tb04833.x
Abstract
1. A large number of potentially bidentate and tridentate amides, X-Y-CONH-Z, were used as model ligands to investigate the complex formation of Cu(II) with the deprotonated peptide nitrogen in biological molecules. A combination of potentiometric titration, spectrophotometry and electron paramagnetic resonance was applied to analyse the structure of the Cu(II) chelates formed at neutral and basic pH. 2. By systematic variation of the primary binding function X, the ring size of the chelate, and the spatial properties of the C-terminal and N-terminal substituents, three classes of amide ligands could be established with reference to their capacity for Cu(II)-induced deprotonation of NHCO and metal binding. 3. Under physiological conditions of pH, peptide (class A) chelates are only formed by those bidentate amide ligands with X being either an imidazole (sp2) nitrogen or a terminal (sp3) amino nitrogen. Mercaptide sulfur must also be considered to belong in this group of strong copper(II)-binding sites, but in our low-molecular-weight model ligands the redox equilibrium 2Cu(II) + 2 RSH ⇄ Cu(I) + RSSR + 2 H+ interferes, yielding insoluble Cu(I)-S polymers above pH 4. In addition to the unidentate binding strength of X, entropy effects play an important role. Depending on whether X is an imidazole or amino nitrogen, only five-membered or six-membered monocyclic chelate structures respectively cause coordination of the deprotonated peptide function. 4. Biuret (class B) Cu(II) chelates are only formed under non-physiological conditions at pH > 11.5 producing the well known violet chromophores CuIIN−4. In general these complexes, which also include the Cu(II) biguanides, show a clearly resolved electron paramagnetic resonance spectrum with nitrogen superhyperfine structure. 5. A third class of peptide model ligands (class C) consists of those amides where the CuII-X bond does not provide enough thermodynamic stability. The binding site of these class C amides includes functional groups such as carboxylate (COO−), methionine sulfur (RSR′), aliphatic or aromatic hydroxyl (OH) and amide nitrogen (NHCO) itself. When X is a pyridine (sp2) nitrogen or an amino (sp3) nitrogen, NHCO deprotonation is only promoted in five-membered but not six-membered ring chelates. On the other hand, a combination of COO− and NH2, as in asparagine, will allow deprotonation of NHCO in the presence of Cu(II). And third, despite a pronounced unidentate affinity of the imidazole nitrogen for Cu(II), N-acetylhistamine acts as a class C amide, in contrast to imidazolylacetamide, which forms a stable Cu(II) peptide chelate. This difference in Cu binding is explained on the basis of space-filling models. These clearly demonstrate that in the case of the 2:1 complex of Cu(II) with N-acetylhistamine, the planarity of the ionised peptide function can not be retained in a square planar arrangement of the two amide ligands around the copper center.This publication has 66 references indexed in Scilit:
- copper proteins systems containing the “Blue” copper centerPublished by Springer Nature ,2007
- A crystallographic model for azurin at 3 Å resolutionJournal of Molecular Biology, 1978
- X-ray crystal structure analysis of plastocyanin at 2.7 Å resolutionNature, 1978
- Spectroscopic studies and a structural model for blue copper centers in proteins.Proceedings of the National Academy of Sciences, 1976
- Crystal structure of bovine Cu,Zn superoxide dismutase at 3 A resolution: chain tracing and metal ligands.Proceedings of the National Academy of Sciences, 1975
- Copper-Containing Oxidases and Superoxide DismutasePublished by Elsevier ,1975
- Metallionen und H2O2. V. Über Struktur und Aktivität der den H2O2‐Zerfall katalysierenden Cu2+‐Komplexe III. Versuche zur Lösung von Strukturproblemen mit Hilfe der KatalyseeigenschaftenHelvetica Chimica Acta, 1966
- Cu(CH3CN) 2 + , ein Mittel zum Studium homogener Reaktionen des einwertigen Kupfers in wässriger LösungCellular and Molecular Life Sciences, 1963
- Metal complexes of peptides and proteinsPublished by Walter de Gruyter GmbH ,1963
- BiuretreactionenEuropean Journal of Inorganic Chemistry, 1896