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Experimental basis for a new allosteric model for multisubunit proteins
by
Abbruzzetti, Stefania
, Bettati, Stefano
, Henry, Eric. R.
, Mozzarelli, Andrea
, Ronda, Luca
, Eaton, William A.
, Viappiani, Cristiano
in
Allosteric Regulation
/ Allosteric Site
/ Binding sites
/ Biochemistry
/ Biological Sciences
/ Crystals
/ functional properties
/ Gels
/ Hemoglobin
/ Hemoglobin A - chemistry
/ Hemoglobin A - metabolism
/ Hemoglobins
/ Hemoglobins - chemistry
/ Hemoglobins - metabolism
/ Humans
/ Kinetics
/ Lasers
/ Ligands
/ Mathematical models
/ Models, Chemical
/ Oxygen
/ Oxygen - chemistry
/ Oxygen - metabolism
/ Photolysis
/ Physical Sciences
/ Protein Binding
/ Protein Structure, Quaternary
/ Protein Structure, Tertiary
/ Protein Subunits - chemistry
/ Protein Subunits - metabolism
/ Proteins
/ Reactivity
/ Silica
/ silica gel
/ Silica Gel - chemistry
/ Silica Gel - metabolism
/ Time constants
2014
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Experimental basis for a new allosteric model for multisubunit proteins
by
Abbruzzetti, Stefania
, Bettati, Stefano
, Henry, Eric. R.
, Mozzarelli, Andrea
, Ronda, Luca
, Eaton, William A.
, Viappiani, Cristiano
in
Allosteric Regulation
/ Allosteric Site
/ Binding sites
/ Biochemistry
/ Biological Sciences
/ Crystals
/ functional properties
/ Gels
/ Hemoglobin
/ Hemoglobin A - chemistry
/ Hemoglobin A - metabolism
/ Hemoglobins
/ Hemoglobins - chemistry
/ Hemoglobins - metabolism
/ Humans
/ Kinetics
/ Lasers
/ Ligands
/ Mathematical models
/ Models, Chemical
/ Oxygen
/ Oxygen - chemistry
/ Oxygen - metabolism
/ Photolysis
/ Physical Sciences
/ Protein Binding
/ Protein Structure, Quaternary
/ Protein Structure, Tertiary
/ Protein Subunits - chemistry
/ Protein Subunits - metabolism
/ Proteins
/ Reactivity
/ Silica
/ silica gel
/ Silica Gel - chemistry
/ Silica Gel - metabolism
/ Time constants
2014
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Experimental basis for a new allosteric model for multisubunit proteins
by
Abbruzzetti, Stefania
, Bettati, Stefano
, Henry, Eric. R.
, Mozzarelli, Andrea
, Ronda, Luca
, Eaton, William A.
, Viappiani, Cristiano
in
Allosteric Regulation
/ Allosteric Site
/ Binding sites
/ Biochemistry
/ Biological Sciences
/ Crystals
/ functional properties
/ Gels
/ Hemoglobin
/ Hemoglobin A - chemistry
/ Hemoglobin A - metabolism
/ Hemoglobins
/ Hemoglobins - chemistry
/ Hemoglobins - metabolism
/ Humans
/ Kinetics
/ Lasers
/ Ligands
/ Mathematical models
/ Models, Chemical
/ Oxygen
/ Oxygen - chemistry
/ Oxygen - metabolism
/ Photolysis
/ Physical Sciences
/ Protein Binding
/ Protein Structure, Quaternary
/ Protein Structure, Tertiary
/ Protein Subunits - chemistry
/ Protein Subunits - metabolism
/ Proteins
/ Reactivity
/ Silica
/ silica gel
/ Silica Gel - chemistry
/ Silica Gel - metabolism
/ Time constants
2014
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Experimental basis for a new allosteric model for multisubunit proteins
Journal Article
Experimental basis for a new allosteric model for multisubunit proteins
2014
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Overview
Monod, Wyman, and Changeux (MWC) explained allostery in multisubunit proteins with a widely applied theoretical model in which binding of small molecules, so-called allosteric effectors, affects reactivity by altering the equilibrium between more reactive (R) and less reactive (T) quaternary structures. In their model, each quaternary structure has a single reactivity. Here, we use silica gels to trap protein conformations and a new kind of laser photolysis experiment to show that hemoglobin, the paradigm of allostery, exhibits two ligand binding phases with the same fast and slow rates in both R and T quaternary structures. Allosteric effectors change the fraction of each phase but not the rates. These surprising results are readily explained by the simplest possible extension of the MWC model to include a preequilibrium between two tertiary conformations that have the same functional properties within each quaternary structure. They also have important implications for the long-standing question of a structural explanation for the difference in hemoglobin oxygen affinity of the two quaternary structures.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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