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Allostery and cooperativity revisited

Protein Science · 2008 · Vol. 17(8) · pp. 1295–1307
Qiang CuiMartin Karplus

Abstract

Although phenomenlogical models that account for cooperativity in allosteric systems date back to the early and mid-60's (e.g., the KNF and MWC models), there is resurgent interest in the topic due to the recent experimental and computational studies that attempted to reveal, at an atomistic level, how allostery actually works. In this review, using systems for which atomistic simulations have been carried out in our groups as examples, we describe the current understanding of allostery, how the mechanisms go beyond the classical MWC/Pauling-KNF descriptions, and point out that the "new view" of allostery, emphasizing "population shifts," is, in fact, an "old view." The presentation offers not only an up-to-date description of allostery from a theoretical/computational perspective, but also helps to resolve several outstanding issues concerning allostery.

Protein Structure and DynamicsSpectroscopy and Quantum Chemical StudiesPhysiological and biochemical adaptationsCooperativityAllosteric regulationPresentation (obstetrics)Perspective (graphical)Statistical physicsComputer sciencePositive economicsChemistryPhysicsEconomics

MeSH terms

Allosteric RegulationAllosteric SiteAnimalsHemoglobinsHumansModels, MolecularProteinsProtein Structure, TertiaryDimerizationProtein Structure, Quaternary

Funding

  • Harvard University
  • National Institutes of Health
Citations
686
FWCI
16.69
field-weighted impact
References
110
Percentile
100%
vs. same field & year
Citations per year
References
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Two-Component Signal Transduction
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Dynamically driven protein allostery
Nature Structural & Molecular Biology · 2006 · 629 citations
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Journal of the Franklin Institute · 1967 · 2,291 citations
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