Genetic switching by the Lac repressor is based on two-state Monod–Wyman–Changeux allostery

Author:

Romanuka Julija1ORCID,Folkers Gert E.1ORCID,Gnida Manuel1ORCID,Kovačič Lidija1ORCID,Wienk Hans1ORCID,Kaptein Robert1ORCID,Boelens Rolf1ORCID

Affiliation:

1. NMR Spectroscopy, Bijvoet Centre for Biomolecular Research, Utrecht University, 3584 CH Utrecht, The Netherlands

Abstract

High-resolution NMR spectroscopy enabled us to characterize allosteric transitions between various functional states of the dimeric Escherichia coli Lac repressor. In the absence of ligands, the dimer exists in a dynamic equilibrium between DNA-bound and inducer-bound conformations. Binding of either effector shifts this equilibrium toward either bound state. Analysis of the ternary complex between repressor, operator DNA, and inducer shows how adding the inducer results in allosteric changes that disrupt the interdomain contacts between the inducer binding and DNA binding domains and how this in turn leads to destabilization of the hinge helices and release of the Lac repressor from the operator. Based on our data, the allosteric mechanism of the induction process is in full agreement with the well-known Monod–Wyman–Changeux model.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

European Commission

Deutsche Forschungsgemeinschaft

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. NMR tools to detect protein allostery;Current Opinion in Structural Biology;2024-06

2. Modulation of Allostery with Multiple Mechanisms by Hotspot Mutations in TetR;Journal of the American Chemical Society;2024-01-17

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