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Changes in Dynamics upon Oligomerization Regulate Substrate Binding and Allostery in Amino Acid Kinase Family Members

Overview of attention for article published in PLoS Computational Biology, September 2011
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Title
Changes in Dynamics upon Oligomerization Regulate Substrate Binding and Allostery in Amino Acid Kinase Family Members
Published in
PLoS Computational Biology, September 2011
DOI 10.1371/journal.pcbi.1002201
Pubmed ID
Authors

Enrique Marcos, Ramon Crehuet, Ivet Bahar

Abstract

Oligomerization is a functional requirement for many proteins. The interfacial interactions and the overall packing geometry of the individual monomers are viewed as important determinants of the thermodynamic stability and allosteric regulation of oligomers. The present study focuses on the role of the interfacial interactions and overall contact topology in the dynamic features acquired in the oligomeric state. To this aim, the collective dynamics of enzymes belonging to the amino acid kinase family both in dimeric and hexameric forms are examined by means of an elastic network model, and the softest collective motions (i.e., lowest frequency or global modes of motions) favored by the overall architecture are analyzed. Notably, the lowest-frequency modes accessible to the individual subunits in the absence of multimerization are conserved to a large extent in the oligomer, suggesting that the oligomer takes advantage of the intrinsic dynamics of the individual monomers. At the same time, oligomerization stiffens the interfacial regions of the monomers and confers new cooperative modes that exploit the rigid-body translational and rotational degrees of freedom of the intact monomers. The present study sheds light on the mechanism of cooperative inhibition of hexameric N-acetyl-L-glutamate kinase by arginine and on the allosteric regulation of UMP kinases. It also highlights the significance of the particular quaternary design in selectively determining the oligomer dynamics congruent with required ligand-binding and allosteric activities.

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Geographical breakdown

Country Count As %
Hungary 1 2%
Norway 1 2%
United Kingdom 1 2%
Argentina 1 2%
United States 1 2%
Unknown 47 90%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 18 35%
Researcher 13 25%
Student > Bachelor 8 15%
Student > Postgraduate 3 6%
Student > Master 3 6%
Other 5 10%
Unknown 2 4%
Readers by discipline Count As %
Agricultural and Biological Sciences 17 33%
Biochemistry, Genetics and Molecular Biology 14 27%
Chemistry 12 23%
Chemical Engineering 2 4%
Arts and Humanities 1 2%
Other 2 4%
Unknown 4 8%