Compound monograph
GHK-Cu
Prezatide copper is the Cu(II) coordination complex of the tripeptide glycyl-L-histidyl-L-lysine. The copper ion is part of the declared molecular identity and distinguishes this record from the free tripeptide.
01
Identity & nomenclature
Prezatide copper is the Cu(II) coordination complex of the tripeptide glycyl-L-histidyl-L-lysine. The copper ion is part of the declared molecular identity and distinguishes this record from the free tripeptide.
GHK-Cu is a trade and literature name for the Cu(II) complex of the tripeptide glycyl-L-histidyl-L-lysine. The free tripeptide and the copper complex are distinct molecular records with different formulas, masses, and registry numbers: the free peptide is CAS 49557-75-7 (INN prezatide), and the copper complex is CAS 89030-95-5 (prezatide copper). Material sold under the name GHK-Cu should be identified against the intended species.
Declared aliases and development codes: Copper tripeptide-1, GHK copper, Cu-GHK.
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Molecular properties
| Molecular formula | C14H23CuN6O4+ |
|---|---|
| Molecular mass | 402.92 Da |
| CAS Registry Number | 89030-95-5 |
| PubChem CID | 71587328 |
| UNII | 6BJQ43T1I9 |
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Structural characteristics
Spectroscopic study of the complex in solution reports a mononuclear 1:1 Cu(II) species at neutral pH, with EPR consistent with two or three equatorial nitrogen donors, one of which is located in the histidyl imidazole ring. The polymeric oxygen-bridged structure determined by X-ray crystallography in the solid state is reported not to persist in solution. Potentiometric and spectrophotometric analysis reports that the epsilon-amino group of the lysine residue contributes to complex stability relative to glycyl-L-histidine and glycyl-L-histidylglycine, and equilibrium dialysis reports that the tripeptide competes with albumin for Cu(II): at equimolar concentrations approximately 42 percent of the Cu(II) was bound to the peptide.
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Molecular targets & mechanisms
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Analytical considerations
Because the free tripeptide and the copper complex have different formulas and masses, identity methods must distinguish the two species rather than reporting a single GHK-Cu mass. Copper content is part of the identity of the complex. Complex formation is reversible: analytical work using GHK-modified nanochannels reports dissociation of the GHK-Cu complex on addition of EDTA.
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Verified bibliography
- Structure of the Glycyl-L-histidyl-L-lysine--copper(II) complex in solution.current
Freedman JH, Pickart L, Weinstein B, Mims WB, Peisach J
Biochemistry · 1982-09-14 · Journal Article
- The interaction of copper(II) and glycyl-L-histidyl-L-lysine, a growth-modulating tripeptide from plasma.current
Lau SJ, Sarkar B
The Biochemical journal · 1981-12-01 · Journal Article
- Ultrasensitive and Label-Free Detection of Copper Ions by GHK-Modified Asymmetric Nanochannels.current
An P, Zhang Z, Yang J, Wang T, Wang Z, Sun CL, Qin C, Li J
Analytical chemistry · 2023-08-25 · Journal Article
- Effects of glycyl-histidyl-lysyl chelated Cu(II) on ferritin dependent lipid peroxidation.current
Miller DM, DeSilva D, Pickart L, Aust SD
Advances in experimental medicine and biology · 1990 · Journal Article
- The human tri-peptide GHK and tissue remodeling.current
Pickart L
Journal of biomaterials science. Polymer edition · 2008 · Review
- N.m.r. and e.p.r. investigation of the interaction of copper(II) and glycyl-L-histidyl-L-lysine, a growth-modulating tripeptide from plasma.current
Laussac JP, Haran R, Sarkar B
The Biochemical journal · 1983-02-01 · Journal Article
- SPARC is a source of copper-binding peptides that stimulate angiogenesis.current
Lane TF, Iruela-Arispe ML, Johnson RS, Sage EH
The Journal of cell biology · 1994-05 · Journal Article
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Methodology & citation verification
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