Literature DB >> 30328810

Tuning site-specific dynamics to drive allosteric activation in a pneumococcal zinc uptake regulator.

Daiana A Capdevila1, Fidel Huerta1,2, Katherine A Edmonds1, My Tra Le1, Hongwei Wu1, David P Giedroc1,3.   

Abstract

MarR (multiple antibiotic resistance repressor) family proteins are bacterial repressors that regulate transcription in response to a wide range of chemical signals. Although specific features of MarR family function have been described, the role of atomic motions in MarRs remains unexplored thus limiting insights into the evolution of allostery in this ubiquitous family of repressors. Here, we provide the first experimental evidence that internal dynamics play a crucial functional role in MarR proteins. Streptococcus pneumoniae AdcR (adhesin-competence repressor) regulates ZnII homeostasis and ZnII functions as an allosteric activator of DNA binding. ZnII coordination triggers a transition from somewhat independent domains to a more compact structure. We identify residues that impact allosteric activation on the basis of ZnII-induced perturbations of atomic motions over a wide range of timescales. These findings appear to reconcile the distinct allosteric mechanisms proposed for other MarRs and highlight the importance of conformational dynamics in biological regulation.
© 2018, Capdevila et al.

Entities:  

Keywords:  Allosteric Activation; Conformational Entropy; E. coli; MarR family repressors; Streptococcus pneumoniae; adhesin competence regulator; biochemistry; chemical biology; molecular biophysics; structural biology; zinc homeostasis

Mesh:

Substances:

Year:  2018        PMID: 30328810      PMCID: PMC6224198          DOI: 10.7554/eLife.37268

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.140


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