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Substrate-dependent switching of the allosteric binding mechanism of a dimeric enzyme.

Authors :
Freiburger, Lee
Miletti, Teresa
Zhu, Siqi
Baettig, Oliver
Berghuis, Albert
Auclair, Karine
Mittermaier, Anthony
Source :
Nature Chemical Biology; Nov2014, Vol. 10 Issue 11, p937-942, 6p
Publication Year :
2014

Abstract

Enzyme activity is commonly controlled by allostery, where ligand binding at one site alters the activities of distant sites. Classical explanations for multisubunit proteins involve conformational transitions that are fundamentally deterministic. For example, in the Monod-Wyman-Changeaux (MWC) paradigm, conformational transitions occur simultaneously in all subunits. In the Koshland-Nemethy-Filmer (KNF) paradigm, conformational transitions only occur in ligand-bound subunits. In contrast, recent models predict conformational changes that are governed by probabilities rather than absolute rules. To better understand allostery at the molecular level, we applied a recently developed spectroscopic and calorimetric method to the interactions of a dimeric enzyme with two different ligands. We found that conformational transitions appear MWC-like for a ligand that binds at the dimer interface and KNF-like for a distal ligand. These results provide strong experimental support for probabilistic allosteric theory predictions that an enzyme can exhibit a mixture of MWC and KNF character, with the balance partly governed by subunit interface energies. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15524450
Volume :
10
Issue :
11
Database :
Complementary Index
Journal :
Nature Chemical Biology
Publication Type :
Academic Journal
Accession number :
98952322
Full Text :
https://doi.org/10.1038/nchembio.1626