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February 21, 2026Biophysical Journal0 citations

BPS2026 – Gating principles of proton transport in dissected modules of respiratory Complex I

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SBSofia Badolato

Key Points

  • This research aims to explore the gating principles of proton transport in respiratory Complex I.
  • Investigated antiporter-like subunits of Complex I
  • Applied time-resolved spectroscopy
  • Utilized site-directed mutagenesis
  • Conducted multiscale molecular simulations
  • Analyzed proton conduction in proteoliposomes
  • Identified key gating residues affecting proton conduction
  • Provided insights into long-range energy transduction in Complex I
  • Highlighted the molecular basis of ion transport across biological membranes

Abstract

The respiratory Complex I is the first enzyme of the respiratory chain and a crucial enzyme for energy transduction in the cell. Complex I takes up electrons from NADH and transfers them to a quinone molecule. These redox reactions occurring in the hydrophilic domain are coupled to the pumping of four protons across the inner mitochondrial membrane, contributing to the generation of a proton motive force that powers the synthesis of ATP. Despite its fundamental role and its association to several mitochondrial disease, the molecular mechanism of Complex I is still highly debated. To study the key principles of the long-range proton pumping, we have dissected here the antiporter-like subunits of the membrane domain of Complex I to study their proton conduction by combining time-resolved spectroscopy, site-directed mutagenesis, and multiscale molecular simulations. We identified key gating residues that modulate the proton conduction in proteoliposomes. Our combined findings provide new insights into the elusive long-range energy transduction mechanism of Complex I and to molecular principles underlying ion transport across biological membranes.

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Cite This Study

Sofia Badolato (2026) studied this question.

synapsesocial.com/papers/69990e0a5b97ab4c14ac2fa7https://doi.org/10.1016/j.bpj.2025.11.1621
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