Snapshot of an oxygen intermediate in the catalytic reaction of cytochrome c oxidase

Author:

Ishigami IzumiORCID,Lewis-Ballester Ariel,Echelmeier Austin,Brehm Gerrit,Zatsepin Nadia A.,Grant Thomas D.,Coe Jesse D.,Lisova Stella,Nelson Garrett,Zhang Shangji,Dobson Zachary F.,Boutet Sébastien,Sierra Raymond G.,Batyuk AlexanderORCID,Fromme Petra,Fromme Raimund,Spence John C. H.,Ros Alexandra,Yeh Syun-RuORCID,Rousseau Denis L.

Abstract

Cytochrome c oxidase (CcO) reduces dioxygen to water and harnesses the chemical energy to drive proton translocation across the inner mitochondrial membrane by an unresolved mechanism. By using time-resolved serial femtosecond crystallography, we identified a key oxygen intermediate of bovine CcO. It is assigned to the PR-intermediate, which is characterized by specific redox states of the metal centers and a distinct protein conformation. The heme a3 iron atom is in a ferryl (Fe4+ = O2−) configuration, and heme a and CuB are oxidized while CuA is reduced. A Helix-X segment is poised in an open conformational state; the heme a farnesyl sidechain is H-bonded to S382, and loop-I-II adopts a distinct structure. These data offer insights into the mechanism by which the oxygen chemistry is coupled to unidirectional proton translocation.

Funder

HHS | NIH | National Institute of General Medical Sciences

DOE | SC | Basic Energy Sciences

NSF | MPS | Division of Chemistry

NSF | Directorate for Biological Sciences

National Sleep Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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