Dynamics and reactivity in heme proteins include direct and indirect interactions of the ligands/substrates like CO, NO and O2 with the environment. Direct electrostatic interactions result from amino acid side chains in the inner cavities and/or metal coordination in the active site, whereas indirect interactions result by ligands in the same coordination sphere. Interactions play a crucial role in stabilizing transition states in catalysis or altering ligation chemistry. We have probed, by Density Functional Theory (DFT), the perturbation degree in the stretching vibrational frequencies of CO, NO and O2 molecules in the presence of electrostatic interactions or hydrogen bonds, under conditions simulating the inner cavities. Moreover, we h...
AbstractWe present density-functional molecular dynamics simulations of FeP(Im)(AB) heme models (AB=...
Objective: Heme cofactors are essential molecule found in almost all forms of life. Biological syste...
The vibronic theory of activation and quantum chemical intermediate neglect of differential overlap ...
Dynamics and reactivity in heme proteins include direct and indirect interactions of the ligands/sub...
We present ab-initio density functional theory studies on the interactions of small biologically act...
Non-local Density Functional Theory (DFT) is applied to the calculation of geometry and vibrational ...
The quantum chemical calculations, vibronic theory of activation, and London-Pople approach are used...
The quantum chemical calculations, vibronic theory of activation, and London-Pople approach are used...
Myoglobin (Mb) and haemoglobin (Hb) are haem proteins that are fundamental to the life of aerobic or...
Myoglobin modulates the binding of diatomic molecules to its heme group via hydrogen-bonding and ste...
Ligand binding by proteins is among the most fundamental processes in nature. Among these processes ...
The binding of O<sub>2</sub> and NO to heme in heme-nitric oxide/oxygen-binding (H-NOX) proteins has...
HNO can interact with numerous heme proteins, but atomic level structures are largely unknown. In th...
We present a systematic investigation of how the axial ligand in heme proteins influences the geomet...
Picosecond mid-IR pump-probe measurements of vibrational relaxation (VR) of CO bound to the active s...
AbstractWe present density-functional molecular dynamics simulations of FeP(Im)(AB) heme models (AB=...
Objective: Heme cofactors are essential molecule found in almost all forms of life. Biological syste...
The vibronic theory of activation and quantum chemical intermediate neglect of differential overlap ...
Dynamics and reactivity in heme proteins include direct and indirect interactions of the ligands/sub...
We present ab-initio density functional theory studies on the interactions of small biologically act...
Non-local Density Functional Theory (DFT) is applied to the calculation of geometry and vibrational ...
The quantum chemical calculations, vibronic theory of activation, and London-Pople approach are used...
The quantum chemical calculations, vibronic theory of activation, and London-Pople approach are used...
Myoglobin (Mb) and haemoglobin (Hb) are haem proteins that are fundamental to the life of aerobic or...
Myoglobin modulates the binding of diatomic molecules to its heme group via hydrogen-bonding and ste...
Ligand binding by proteins is among the most fundamental processes in nature. Among these processes ...
The binding of O<sub>2</sub> and NO to heme in heme-nitric oxide/oxygen-binding (H-NOX) proteins has...
HNO can interact with numerous heme proteins, but atomic level structures are largely unknown. In th...
We present a systematic investigation of how the axial ligand in heme proteins influences the geomet...
Picosecond mid-IR pump-probe measurements of vibrational relaxation (VR) of CO bound to the active s...
AbstractWe present density-functional molecular dynamics simulations of FeP(Im)(AB) heme models (AB=...
Objective: Heme cofactors are essential molecule found in almost all forms of life. Biological syste...
The vibronic theory of activation and quantum chemical intermediate neglect of differential overlap ...