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Tomasz Borowski
Tomasz Borowski
IKiFP PAN
Zweryfikowany adres z cyf-kr.edu.pl
Tytuł
Cytowane przez
Cytowane przez
Rok
Quantum chemical studies of mechanisms for metalloenzymes
MRA Blomberg, T Borowski, F Himo, RZ Liao, PEM Siegbahn
Chemical reviews 114 (7), 3601-3658, 2014
5512014
Modeling enzymatic reactions involving transition metals
PEM Siegbahn, T Borowski
Accounts of chemical research 39 (10), 729-738, 2006
3542006
Crystal structures of histone demethylase JMJD2A reveal basis for substrate specificity
SS Ng, KL Kavanagh, MA McDonough, D Butler, ES Pilka, BMR Lienard, ...
Nature 448 (7149), 87-91, 2007
3482007
Mechanism of Dioxygen Activation in 2‐Oxoglutarate‐Dependent Enzymes: A Hybrid DFT Study
T Borowski, A Bassan, PEM Siegbahn
Chemistry–A European Journal 10 (4), 1031-1041, 2004
1652004
Iron-containing enzymes: Versatile catalysts of hydroxylation reactions in nature
S Shaik, GD Straganz, M Costas, P Comba, F Neese, P Siegbahn, ...
Royal Society of Chemistry, 2011
1602011
Quantum mechanics/molecular mechanics modeling of enzymatic processes: Caveats and breakthroughs
MG Quesne, T Borowski, SP de Visser
Chemistry–A European Journal 22 (8), 2562-2581, 2016
1412016
Mechanism of selective halogenation by SyrB2: a computational study
T Borowski, H Noack, M Radon, K Zych, PEM Siegbahn
Journal of the American Chemical Society 132 (37), 12887-12898, 2010
1052010
4-Hydroxyphenylpyruvate dioxygenase: a hybrid density functional study of the catalytic reaction mechanism
T Borowski, A Bassan, PEM Siegbahn
Biochemistry 43 (38), 12331-12342, 2004
1052004
Mechanism for catechol ring cleavage by non-heme iron intradiol dioxygenases: a hybrid DFT study
T Borowski, PEM Siegbahn
Journal of the American Chemical Society 128 (39), 12941-12953, 2006
982006
Reaction mechanism of apocarotenoid oxygenase (ACO): a DFT study
T Borowski, MRA Blomberg, PEM Siegbahn
Chemistry–A European Journal 14 (7), 2264-2276, 2008
952008
Time-dependent DFT study on electronic states of vanadium and molybdenum oxide molecules
E Brocławik, T Borowski
Chemical physics letters 339 (5-6), 433-437, 2001
942001
Bacterial steroid hydroxylases: enzyme classes, their functions and comparison of their catalytic mechanisms
M Szaleniec, AM Wojtkiewicz, R Bernhardt, T Borowski, M Donova
Applied Microbiology and Biotechnology 102, 8153-8171, 2018
842018
Catalytic reaction mechanism of homogentisate dioxygenase: A hybrid DFT study
T Borowski, V Georgiev, PEM Siegbahn
Journal of the American Chemical Society 127 (49), 17303-17314, 2005
742005
Quantum chemical studies of dioxygen activation by mononuclear non-heme iron enzymes with the 2-His-1-carboxylate facial triad
A Bassan, T Borowski, PEM Siegbahn
Dalton Transactions, 3153-3162, 2004
742004
Mechanism of O2 Activation by α-Ketoglutarate Dependent Oxygenases Revisited. A Quantum Chemical Study
A Wojcik, M Radon, T Borowski
The Journal of Physical Chemistry A 120 (8), 1261-1274, 2016
682016
Theoretical studies of enzyme mechanisms involving high-valent iron intermediates
A Bassan, MRA Blomberg, T Borowski, PEM Siegbahn
Journal of inorganic biochemistry 100 (4), 727-743, 2006
622006
Ab Inito Modeling of Ethylbenzene Dehydrogenase Reaction Mechanism
M Szaleniec, T Borowski, K Schühle, M Witko, J Heider
Journal of the American Chemical Society 132 (17), 6014-6024, 2010
592010
A comparison of the reaction mechanisms of iron-and manganese-containing 2, 3-HPCD: an important spin transition for manganese
V Georgiev, T Borowski, MRA Blomberg, PEM Siegbahn
JBIC Journal of Biological Inorganic Chemistry 13, 929-940, 2008
562008
Ethylene biosynthesis by 1‐aminocyclopropane‐1‐carboxylic acid oxidase: a DFT study
A Bassan, T Borowski, CJ Schofield, PEM Siegbahn
Chemistry–A European Journal 12 (34), 8835-8846, 2006
522006
Catalytic reaction mechanism of lipoxygenase. A density functional theory study
T Borowski, E Brocławik
The Journal of Physical Chemistry B 107 (19), 4639-4646, 2003
522003
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