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Azurin as a Protein Scaffold for a Low-coordinate Nonheme Iron Site with a Small-molecule Binding Pocket

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Figshare2016-02-20 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Azurin_as_a_Protein_Scaffold_for_a_Low_coordinate_Nonheme_Iron_Site_with_a_Small_molecule_Binding_Pocket/2463967
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The apoprotein of Pseudomonas aeruginosa azurin binds iron­(II) to give a 1:1 complex, which has been characterized by electronic absorption, Mössbauer, and NMR spectroscopies, as well as X-ray crystallography and quantum-chemical computations. Despite potential competition by water and other coordinating residues, iron­(II) binds tightly to the low-coordinate site. The iron­(II) complex does not react with chemical redox agents to undergo oxidation or reduction. Spectroscopically calibrated quantum-chemical computations show that the complex has high-spin iron­(II) in a pseudotetrahedral coordination environment, which features interactions with side chains of two histidines and a cysteine as well as the CO of Gly45. In the 5A1 ground state, the dz2 orbital is doubly occupied. Mutation of Met121 to Ala leaves the metal site in a similar environment but creates a pocket for reversible binding of small anions to the iron­(II) center. Specifically, azide forms a high-spin iron­(II) complex and cyanide forms a low-spin iron­(II) complex.
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2016-02-20
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