1 |
Theoretical Description of the Primary Proton-Coupled Electron Transfer Reaction in the Cytochrome bc(1) Complex Barragan AM, Soudackov AV, Luthey-Schulten Z, Hammes-Schiffer S, Schulten K, Solov'yov IA Journal of the American Chemical Society, 143(2), 715, 2021 |
2 |
Spontaneous Binding of Molecular Oxygen at the Q(o)-Site of the bc(1) Complex Could Stimulate Superoxide Formation (vol 138, pg 12150, 2016) Husen P, Solov'yov IA Journal of the American Chemical Society, 142(25), 11314, 2020 |
3 |
Charge Transfer at the Q(o)-Site of the Cytochrome bc(1) Complex Leads to Superoxide Production Salo AB, Husen P, Solov'yov IA Journal of Physical Chemistry B, 121(8), 1771, 2017 |
4 |
Mutations at the Q(o) Site of the Cytochrome bc(1) Complex Strongly Affect Oxygen Binding Husen P, Solov'yov IA Journal of Physical Chemistry B, 121(15), 3308, 2017 |
5 |
Mechanism of the Primary Charge Transfer Reaction in the Cytochrome bc(1) Complex Barragan AM, Schulten K, Solov'yov IA Journal of Physical Chemistry B, 120(44), 11369, 2016 |
6 |
Spontaneous Binding of Molecular Oxygen at the Q(o)-Site of the bc(1) Complex Could Stimulate Superoxide Formation Husen P, Solov'yov IA Journal of the American Chemical Society, 138(37), 12150, 2016 |
7 |
Identification of Ubiquinol Binding Motifs at the Q(o)-Site of the Cytochrome bc(1) Complex Barragan AM, Crofts AR, Schulten K, Solov'yov IA Journal of Physical Chemistry B, 119(2), 433, 2015 |
8 |
Solvent Driving Force Ensures Fast Formation of a Persistent and Well-Separated Radical Pair in Plant Cryptochrome Ludemann G, Solov'yov IA, Kubar T, Elstner M Journal of the American Chemical Society, 137(3), 1147, 2015 |
9 |
Reaction Kinetics and Mechanism of Magnetic Field Effects in Cryptochrome Solov'yov IA, Schulten K Journal of Physical Chemistry B, 116(3), 1089, 2012 |
10 |
Decrypting Cryptochrome: Revealing the Molecular Identity of the Photoactivation Reaction Solov'yov IA, Domratcheva T, Shahi ARM, Schulten K Journal of the American Chemical Society, 134(43), 18046, 2012 |