Kumar, D.; Thiel, W.; de Visser, S. P. Theoretical Study on the Mechanism of the Oxygen Activation Process in Cysteine Dioxygenase Enzymes. Journal of the American Chemical Society2011, 133, 3869–3882.
Altarsha, M.; Benighaus, T.; Kumar, D.; Thiel, W. Coupling and uncoupling mechanisms in the methoxythreonine mutant of cytochrome P450cam: A quantum mechanical/molecular mechanical study. Journal of Biological Inorganic Chemistry2010, 15, 361–372.
Altarsha, M.; Benighaus, T.; Kumar, D.; Thiel, W. How is the Reactivity of Cytochrome P450cam Affected by Thr252X Mutation? A QM/MM Study for X = Serine, Valine, Alanine, Glycine. Journal of the American Chemical Society2009, 131, 4755–4763.
Altarsha, M.; Wang, D.; Benighaus, T.; Kumar, D.; Thiel, W. QM/MM Study of the Second Proton Transfer in the Catalytic Cycle of the D251N Mutant of Cytochrome P450cam. Journal of Physical Chemistry B2009, 113, 9577–9588.
Altun, A.; Kumar, D.; Neese, F.; Thiel, W. Multireference Ab Initio Quantum Mechanics/Molecular Mechanics Study on Intermediates in the Catalytic Cycle of Cytochrome P450cam. The Journal of Physical Chemistry A2008, 112, 12904–12910.
Hirao, H.; Kumar, D.; Thiel, W.; Shaik, S. Two states and two more in the mechanisms of hydroxylation and epoxidation by cytochrome P450. Journal of the American Chemical Society2005, 127, 13007–13018.
Kumar, D.; Hirao, H.; de Visser, S. P.; Zheng, J.; Wang, D.; Thiel, W.; Shaik, S. New features in the catalytic cycle of cytochrome P450 during the formation of compound I from compound 0. Journal of Physical Chemistry B2005, 109, 19946–19951.
Shaik, S.; Kumar, D.; de Visser, S. P.; Altun, A.; Thiel, W. Theoretical perspective on the structure and mechanism of cytochrome P450 enzymes. Chemical Reviews2005, 105, 2279–2328.
de Visser, S. P.; Shaik, S.; Sharma, P. K.; Kumar, D.; Thiel, W. Active species of horseradish peroxidase (HRP) and cytochrome P450: Two electronic chameleons. Journal of the American Chemical Society2003, 125, 15779–15788.