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zadetkov: 130
1.
  • Architecture of bacterial respiratory chains
    Kaila, Ville R I; Wikström, Mårten Nature reviews. Microbiology, 05/2021, Letnik: 19, Številka: 5
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    Bacteria power their energy metabolism using membrane-bound respiratory enzymes that capture chemical energy and transduce it by pumping protons or Na ions across their cell membranes. Recent ...
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  • Long-range proton-coupled e... Long-range proton-coupled electron transfer in biological energy conversion: towards mechanistic understanding of respiratory complex I
    Kaila, Ville R. I. Journal of the Royal Society interface, 04/2018, Letnik: 15, Številka: 141
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    Biological energy conversion is driven by efficient enzymes that capture, store and transfer protons and electrons across large distances. Recent advances in structural biology have provided ...
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3.
  • Energetics and Dynamics of ... Energetics and Dynamics of Proton-Coupled Electron Transfer in the NADH/FMN Site of Respiratory Complex I
    Saura, Patricia; Kaila, Ville R. I Journal of the American Chemical Society, 04/2019, Letnik: 141, Številka: 14
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    Complex I functions as an initial electron acceptor in aerobic respiratory chains that reduces quinone and pumps protons across a biological membrane. This remarkable charge transfer process extends ...
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4.
  • Resolving Chemical Dynamics... Resolving Chemical Dynamics in Biological Energy Conversion: Long-Range Proton-Coupled Electron Transfer in Respiratory Complex I
    Kaila, Ville R. I Accounts of chemical research, 12/2021, Letnik: 54, Številka: 24
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    Conspectus Biological energy conversion is catalyzed by membrane-bound proteins that transduce chemical or light energy into energy forms that power endergonic processes in the cell. At a molecular ...
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5.
  • Benchmarking the Performanc... Benchmarking the Performance of Time-Dependent Density Functional Theory Methods on Biochromophores
    Shao, Yihan; Mei, Ye; Sundholm, Dage ... Journal of chemical theory and computation, 01/2020, Letnik: 16, Številka: 1
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    Quantum chemical calculations are important for elucidating light-capturing mechanisms in photobiological systems. The time-dependent density functional theory (TDDFT) has become a popular ...
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6.
  • Reciprocal Coupling in Chem... Reciprocal Coupling in Chemically Fueled Assembly: A Reaction Cycle Regulates Self-Assembly and Vice Versa
    Kriebisch, Brigitte A. K; Jussupow, Alexander; Bergmann, Alexander M ... Journal of the American Chemical Society, 12/2020, Letnik: 142, Številka: 49
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    In biology, self-assembly of proteins and energy-consuming reaction cycles are intricately coupled. For example, tubulin is activated and deactivated for assembly by a guanosine triphosphate ...
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  • Proton-Coupled Electron Tra... Proton-Coupled Electron Transfer in Cytochrome Oxidase
    Kaila, Ville R. I; Verkhovsky, Michael I; Wikström, Mårten Chemical reviews, 12/2010, Letnik: 110, Številka: 12
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    Kaila et al examine proton-coupled electron transfer in cytochrome oxidase, focusing on the transfer of electrons and protons, electron tunneling in cytochrome c oxidase, catalytic cycle and states ...
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  • Redox-coupled proton pumpin... Redox-coupled proton pumping drives carbon concentration in the photosynthetic complex I
    Schuller, Jan M; Saura, Patricia; Thiemann, Jacqueline ... Nature communications, 01/2020, Letnik: 11, Številka: 1
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    Photosynthetic organisms capture light energy to drive their energy metabolism, and employ the chemical reducing power to convert carbon dioxide (CO ) into organic molecules. Photorespiration, ...
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10.
  • Water-Gated Proton Transfer... Water-Gated Proton Transfer Dynamics in Respiratory Complex I
    Mühlbauer, Max E; Saura, Patricia; Nuber, Franziska ... Journal of the American Chemical Society, 08/2020, Letnik: 142, Številka: 32
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    The respiratory complex I transduces redox energy into an electrochemical proton gradient in aerobic respiratory chains, powering energy-requiring processes in the cell. However, despite recently ...
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zadetkov: 130

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