AbstractSpectroscopic studies indicate an interaction of the distal histidine with the heme iron as well as the transmission of distal heme perturbations across the α1β1 interface. Molecular dynamics simulations have been used to explain the molecular basis for these processes. Using a human methemoglobin αβ dimer, it has been shown that at 235K after 61ps, a rearrangement occurs in the α-chain corresponding to the formation of a bond with the distal histidine. This transition does not take place in the β-chain during a 100-ps simulation and is reversed at 300K. The absence of the distal histidine transition in the isolated chains and with the interface frozen indicate the involvement of the αβ interface. A detailed analysis of the simulati...
Model-free-based NMR dynamics studies have been undertaken for polypeptide backbone amide N-H bond v...
Molecular dynamics simulations, low temperature visible absorption spectroscopy, and resonance Raman...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...
AbstractIt is still difficult to obtain a precise structural description of the transition between t...
Hemoglobin exhibits allosteric structural changes upon ligand binding due to the dynamic interaction...
AbstractIt is still difficult to obtain a precise structural description of the transition between t...
The structural dynamics of dimeric hemoglobin (HbI) from Scapharca inaequiva...
The structural dynamics of dimeric hemoglobin (HbI) from Scapharca inaequivalvis in different ligand...
The solution structure of human adult carbonmonoxy hemoglobin (HbCO A) was refined using stereospeci...
AbstractRecent functional studies reported on human adult hemoglobin (HbA) show that heterotropic ef...
Cooperative binding of ligands to proteins can serve to increase their efficiency and to regulate th...
The distal side of the heme pocket, known to regulate ligand affinity, is shown to be directly invol...
Molecular dynamics simulations of 2-ns duration were performed on carbonmonoxymyoglobin and deoxymyo...
We perform a computer simulation of the quaternary structure change during the allosteric transition...
Like many hemoglobins, the structure of the dimeric hemoglobin from the clam Scapharca inaequivalvis...
Model-free-based NMR dynamics studies have been undertaken for polypeptide backbone amide N-H bond v...
Molecular dynamics simulations, low temperature visible absorption spectroscopy, and resonance Raman...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...
AbstractIt is still difficult to obtain a precise structural description of the transition between t...
Hemoglobin exhibits allosteric structural changes upon ligand binding due to the dynamic interaction...
AbstractIt is still difficult to obtain a precise structural description of the transition between t...
The structural dynamics of dimeric hemoglobin (HbI) from Scapharca inaequiva...
The structural dynamics of dimeric hemoglobin (HbI) from Scapharca inaequivalvis in different ligand...
The solution structure of human adult carbonmonoxy hemoglobin (HbCO A) was refined using stereospeci...
AbstractRecent functional studies reported on human adult hemoglobin (HbA) show that heterotropic ef...
Cooperative binding of ligands to proteins can serve to increase their efficiency and to regulate th...
The distal side of the heme pocket, known to regulate ligand affinity, is shown to be directly invol...
Molecular dynamics simulations of 2-ns duration were performed on carbonmonoxymyoglobin and deoxymyo...
We perform a computer simulation of the quaternary structure change during the allosteric transition...
Like many hemoglobins, the structure of the dimeric hemoglobin from the clam Scapharca inaequivalvis...
Model-free-based NMR dynamics studies have been undertaken for polypeptide backbone amide N-H bond v...
Molecular dynamics simulations, low temperature visible absorption spectroscopy, and resonance Raman...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...