Inequivalence of the Two Tyrosine Ligands in the N-Lobe of Human Serum Transferrin
Autor: | Beatrice M. Tam, N. Dennis Chasteen, Anne B. Mason, Qing-Yu He, and John K. Grady, Ross T. A. MacGillivray, Robert C. Woodworth |
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Rok vydání: | 1997 |
Předmět: |
Nitrilotriacetic Acid
Stereochemistry Iron Mutant Phenylalanine Ligands Biochemistry law.invention law Humans Tyrosine Electron paramagnetic resonance Histidine chemistry.chemical_classification Aspartic Acid Binding Sites Ligand Chemistry Mutagenesis Electron Spin Resonance Spectroscopy Titrimetry Transferrin Recombinant Proteins Copper |
Zdroj: | Biochemistry. 36:14853-14860 |
ISSN: | 1520-4995 0006-2960 |
DOI: | 10.1021/bi9719556 |
Popis: | Human serum transferrin N-lobe (hTF/2N) has four iron-binding ligands, including one histidine, one aspartate, and two tyrosines. The present report elucidates the inequivalence of the two tyrosine ligands (Tyr 95 and Tyr 188) on the metal-binding properties of hTF/2N by means of site-directed mutagenesis, metal release kinetics, and absorption and electron paramagnetic resonance (EPR) spectroscopies. When the liganding tyrosines were mutated individually to phenylalanine, the resulting mutant Y95F showed a weak binding affinity for iron and no affinity for copper, whereas, mutant Y188F completely lost the ability to bind iron but formed a stable complex with copper. Since other studies have demonstrated that mutations of the other two ligands, histidine and aspartate, did not completely abolish iron binding, the present findings suggest that the tyrosine ligand at position 188 is essential for binding of iron to occur. Replacement of Tyr 188 with phenylalanine created a favorable chemical environment for copper coordination but a fatal situation for iron binding. The positions of the two liganding tyrosines in the metal-binding cleft suggest a reason for the inequivalence. |
Databáze: | OpenAIRE |
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