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Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions

The heterodimeric ABC transporter LmrCD from Lactococcus lactis is able to extrude several different toxic compounds from the cell, fulfilling a role in the intrinsic and induced drug resistance. The expression of the lmrCD genes is regulated by the multi-drug binding repressor LmrR, which also bind...

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Autores principales: van der Berg, Jan Pieter, Madoori, Pramod Kumar, Komarudin, Amalina Ghaisani, Thunnissen, Andy-Mark, Driessen, Arnold J. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4534193/
https://www.ncbi.nlm.nih.gov/pubmed/26267906
http://dx.doi.org/10.1371/journal.pone.0135467
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author van der Berg, Jan Pieter
Madoori, Pramod Kumar
Komarudin, Amalina Ghaisani
Thunnissen, Andy-Mark
Driessen, Arnold J. M.
author_facet van der Berg, Jan Pieter
Madoori, Pramod Kumar
Komarudin, Amalina Ghaisani
Thunnissen, Andy-Mark
Driessen, Arnold J. M.
author_sort van der Berg, Jan Pieter
collection PubMed
description The heterodimeric ABC transporter LmrCD from Lactococcus lactis is able to extrude several different toxic compounds from the cell, fulfilling a role in the intrinsic and induced drug resistance. The expression of the lmrCD genes is regulated by the multi-drug binding repressor LmrR, which also binds to its own promoter to autoregulate its own expression. Previously, we reported the crystal structure of LmrR in the presence and absence of the drugs Hoechst 33342 and daunomycin. Analysis of the mechanism how drugs control the repressor activity of LmrR is impeded by the fact that these drugs also bind to DNA. Here we identified, using X-ray crystallography and fluorescence, that riboflavin binds into the drug binding cavity of LmrR, adopting a similar binding mode as Hoechst 33342 and daunomycin. Microscale thermophoresis was employed to quantify the binding affinity of LmrR to its responsive promoter regions and to evaluate the cognate site of LmrR in the lmrCD promoter region. Riboflavin reduces the binding affinity of LmrR for the promoter regions. Our results support a model wherein drug binding to LmrR relieves the LmrR dependent repression of the lmrCD genes.
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spelling pubmed-45341932015-08-24 Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions van der Berg, Jan Pieter Madoori, Pramod Kumar Komarudin, Amalina Ghaisani Thunnissen, Andy-Mark Driessen, Arnold J. M. PLoS One Research Article The heterodimeric ABC transporter LmrCD from Lactococcus lactis is able to extrude several different toxic compounds from the cell, fulfilling a role in the intrinsic and induced drug resistance. The expression of the lmrCD genes is regulated by the multi-drug binding repressor LmrR, which also binds to its own promoter to autoregulate its own expression. Previously, we reported the crystal structure of LmrR in the presence and absence of the drugs Hoechst 33342 and daunomycin. Analysis of the mechanism how drugs control the repressor activity of LmrR is impeded by the fact that these drugs also bind to DNA. Here we identified, using X-ray crystallography and fluorescence, that riboflavin binds into the drug binding cavity of LmrR, adopting a similar binding mode as Hoechst 33342 and daunomycin. Microscale thermophoresis was employed to quantify the binding affinity of LmrR to its responsive promoter regions and to evaluate the cognate site of LmrR in the lmrCD promoter region. Riboflavin reduces the binding affinity of LmrR for the promoter regions. Our results support a model wherein drug binding to LmrR relieves the LmrR dependent repression of the lmrCD genes. Public Library of Science 2015-08-12 /pmc/articles/PMC4534193/ /pubmed/26267906 http://dx.doi.org/10.1371/journal.pone.0135467 Text en © 2015 van der Berg et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
van der Berg, Jan Pieter
Madoori, Pramod Kumar
Komarudin, Amalina Ghaisani
Thunnissen, Andy-Mark
Driessen, Arnold J. M.
Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions
title Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions
title_full Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions
title_fullStr Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions
title_full_unstemmed Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions
title_short Binding of the Lactococcal Drug Dependent Transcriptional Regulator LmrR to Its Ligands and Responsive Promoter Regions
title_sort binding of the lactococcal drug dependent transcriptional regulator lmrr to its ligands and responsive promoter regions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4534193/
https://www.ncbi.nlm.nih.gov/pubmed/26267906
http://dx.doi.org/10.1371/journal.pone.0135467
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