血红素
化学
组氨酸
血红素蛋白
辅因子
金属蛋白
氧化还原
半胱氨酸
血红素
铜蛋白
立体化学
组合化学
无机化学
金属
生物化学
氨基酸
有机化学
铜
酶
作者
Karl J. Koebke,Toni Kühl,Élisabeth Lojou,Borries Demeler,Barbara Schoepp‐Cothenet,Olga Iranzo,Vincent L. Pecoraro,Anabella Ivancich
标识
DOI:10.1002/anie.202012673
摘要
Abstract De Novo metalloprotein design assesses the relationship between metal active site architecture and catalytic reactivity. Herein, we use an α‐helical scaffold to control the iron coordination geometry when a heme cofactor is allowed to bind to either histidine or cysteine ligands, within a single artificial protein. Consequently, we uncovered a reversible pH‐induced switch of the heme axial ligation within this simplified scaffold. Characterization of the specific heme coordination modes was done by using UV/Vis and Electron Paramagnetic Resonance spectroscopies. The penta‐ or hexa‐coordinate thiolate heme (9≤pH≤11) and the penta‐coordinate imidazole heme (6≤pH≤8.5) reproduces well the heme ligation in chloroperoxidases or cyt P450 monooxygenases and peroxidases, respectively. The stability of heme coordination upon ferric/ferrous redox cycling is a crucial property of the construct. At basic pHs, the thiolate mini‐heme protein can catalyze O 2 reduction when adsorbed onto a pyrolytic graphite electrode.
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