Large conformational transitions play an essential role in the function of many proteins, but experiments do not provide the atomic details of the path followed in going from one end structure to the other. For the hemoglobin tetramer, the transition path between the unliganded (T) and tetraoxygenated (R) structures is not known, which limits our understanding of the cooperative mechanism in this classic allosteric system, where both tertiary and quaternary changes are involved. The conjugate peak refinement algorithm is used to compute an unbiased minimum energy path at atomic detail between the two end states. Although the results confirm some of the proposals of Perutz [Perutz MF (1970) Stereochemistry of cooperative effects in haemoglob...
Monod, Wyman, and Changeux (MWC) explained allostery in multisubunit proteins with a widely applied...
International audienceThe acknowledged success of the Monod-Wyman-Changeux (MWC) allosteric model st...
International audienceProteins are dynamic molecular machines whose structure and function are modul...
We perform a computer simulation of the quaternary structure change during the allosteric transition...
AbstractIt is still difficult to obtain a precise structural description of the transition between t...
Hemoglobin is the prototypic allosteric protein. Still, its molecular allosteric mechanism is not fu...
We compare various allosteric models that have been proposed to explain cooperative oxygen binding t...
After more than a century of experimental, theoretical and computational studies, there is no genera...
The two-state allosteric model of Monod, Wyman, and Changeux (MWC) provides an excellent description...
We perform an analysis of the quaternary structure and dimer/dimer interface in the crystal structur...
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...
Hemoglobin transports molecular oxygen from the lungs to all human tissues for cellular respiration....
Proteins are dynamic molecular machines whose structure and function are modulated by environmental ...
<div><p>Hemoglobin transports molecular oxygen from the lungs to all human tissues for cellular resp...
Monod, Wyman, and Changeux (MWC) explained allostery in multisubunit proteins with a widely applied...
International audienceThe acknowledged success of the Monod-Wyman-Changeux (MWC) allosteric model st...
International audienceProteins are dynamic molecular machines whose structure and function are modul...
We perform a computer simulation of the quaternary structure change during the allosteric transition...
AbstractIt is still difficult to obtain a precise structural description of the transition between t...
Hemoglobin is the prototypic allosteric protein. Still, its molecular allosteric mechanism is not fu...
We compare various allosteric models that have been proposed to explain cooperative oxygen binding t...
After more than a century of experimental, theoretical and computational studies, there is no genera...
The two-state allosteric model of Monod, Wyman, and Changeux (MWC) provides an excellent description...
We perform an analysis of the quaternary structure and dimer/dimer interface in the crystal structur...
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...
Hemoglobin transports molecular oxygen from the lungs to all human tissues for cellular respiration....
Proteins are dynamic molecular machines whose structure and function are modulated by environmental ...
<div><p>Hemoglobin transports molecular oxygen from the lungs to all human tissues for cellular resp...
Monod, Wyman, and Changeux (MWC) explained allostery in multisubunit proteins with a widely applied...
International audienceThe acknowledged success of the Monod-Wyman-Changeux (MWC) allosteric model st...
International audienceProteins are dynamic molecular machines whose structure and function are modul...