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Structure of inhibitor-bound mammalian complex I.

Published version
Peer-reviewed

Type

Article

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Abstract

Respiratory complex I (NADH:ubiquinone oxidoreductase) captures the free energy from oxidising NADH and reducing ubiquinone to drive protons across the mitochondrial inner membrane and power oxidative phosphorylation. Recent cryo-EM analyses have produced near-complete models of the mammalian complex, but leave the molecular principles of its long-range energy coupling mechanism open to debate. Here, we describe the 3.0-Å resolution cryo-EM structure of complex I from mouse heart mitochondria with a substrate-like inhibitor, piericidin A, bound in the ubiquinone-binding active site. We combine our structural analyses with both functional and computational studies to demonstrate competitive inhibitor binding poses and provide evidence that two inhibitor molecules bind end-to-end in the long substrate binding channel. Our findings reveal information about the mechanisms of inhibition and substrate reduction that are central for understanding the principles of energy transduction in mammalian complex I.

Description

Keywords

Animals, Binding Sites, Cryoelectron Microscopy, Electron Transport Complex I, Enzyme Inhibitors, Female, Mammals, Mice, Mice, Inbred C57BL, Mitochondria, Heart, Molecular Dynamics Simulation, Oxidative Phosphorylation, Pyridines

Journal Title

Nat Commun

Conference Name

Journal ISSN

2041-1723
2041-1723

Volume Title

11

Publisher

Springer Science and Business Media LLC
Sponsorship
Medical Research Council (MC_U105663141)
MRC (MC_UU_00015/2)
Medical Research Council (MC_UU_00015/7)