In the present thesis, the reaction mechanisms of several di-zinc hydrolases have been explored using quantum chemical modeling of the enzyme active sites. The studied enzymes are phosphotriesterase (PTE), aminopeptidase from Aeromonas proteolytica (AAP), glyoxalase II (GlxII), and alkaline phosphatase (AP). All of them contain a binuclear divalent zinc core in the active site. The density functional theory (DFT) method B3LYP functional was employed in the investigations. The potential energy surfaces (PESs) for various reaction pathways have been mapped and the involved transition states and intermediates have been characterized. The hydrolyses of different types of substrates were examined, including phosphate esters (PTE and AP) and the ...
To mimic the active sites of the hydrolytic enzyme zinc phosphotriesterase, a new dinucleating unsym...
To mimic the active sites of the hydrolytic enzyme zinc phosphotriesterase, a new dinucleating unsym...
Computer modeling of enzymes is a valuable complement to experiments. Quantum chemical studies of en...
In this thesis, quantum chemical methods have been used to shed light on the reaction mechanisms of ...
The Quantum chemical cluster approach has been shown to be quite powerful and efficient in the model...
the hydrolysis of choline phospholipids. In the present study, density functional theory is used to ...
Computation is increasingly well placed to offer insight into a range of structural and spectroscopi...
We here present a theoretical study of the alkaline hydrolysis of methyl p-nitrophenyl phosphate (Mp...
Density functional theory calculations have been used to investigate the reaction mechanisms of phos...
In this thesis, density functional theory is employed in the study of two kinds of systems that can ...
To improve our mechanistic understanding of zinc metalloenzymes, we report a joint computational and...
In this thesis, density functional theory is employed in the study of two kinds of systems that can ...
Computation is increasingly well placed to offer insight into a range of structural and spectroscopi...
The dinuclear complex [Zn2(DPCPMP)(pivalate)](ClO4), where DPCPMP is the new unsymmetrical ligand [2...
Density functional calculations are utilized to explore the hydrolysis mechanisms of the phosphomono...
To mimic the active sites of the hydrolytic enzyme zinc phosphotriesterase, a new dinucleating unsym...
To mimic the active sites of the hydrolytic enzyme zinc phosphotriesterase, a new dinucleating unsym...
Computer modeling of enzymes is a valuable complement to experiments. Quantum chemical studies of en...
In this thesis, quantum chemical methods have been used to shed light on the reaction mechanisms of ...
The Quantum chemical cluster approach has been shown to be quite powerful and efficient in the model...
the hydrolysis of choline phospholipids. In the present study, density functional theory is used to ...
Computation is increasingly well placed to offer insight into a range of structural and spectroscopi...
We here present a theoretical study of the alkaline hydrolysis of methyl p-nitrophenyl phosphate (Mp...
Density functional theory calculations have been used to investigate the reaction mechanisms of phos...
In this thesis, density functional theory is employed in the study of two kinds of systems that can ...
To improve our mechanistic understanding of zinc metalloenzymes, we report a joint computational and...
In this thesis, density functional theory is employed in the study of two kinds of systems that can ...
Computation is increasingly well placed to offer insight into a range of structural and spectroscopi...
The dinuclear complex [Zn2(DPCPMP)(pivalate)](ClO4), where DPCPMP is the new unsymmetrical ligand [2...
Density functional calculations are utilized to explore the hydrolysis mechanisms of the phosphomono...
To mimic the active sites of the hydrolytic enzyme zinc phosphotriesterase, a new dinucleating unsym...
To mimic the active sites of the hydrolytic enzyme zinc phosphotriesterase, a new dinucleating unsym...
Computer modeling of enzymes is a valuable complement to experiments. Quantum chemical studies of en...