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Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module

BACKGROUND: The direct isolation of integron gene cassettes from cultivated and environmental microbial sources allows an assessment of the impact of the integron/gene cassette system on the emergence of new phenotypes, such as drug resistance or virulence. A structural approach is being exploited t...

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Autores principales: Deshpande, Chandrika N., Harrop, Stephen J., Boucher, Yan, Hassan, Karl A., Leo, Rosa Di, Xu, Xiaohui, Cui, Hong, Savchenko, Alexei, Chang, Changsoo, Labbate, Maurizio, Paulsen, Ian T., Stokes, H. W., Curmi, Paul M. G., Mabbutt, Bridget C.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3048380/
https://www.ncbi.nlm.nih.gov/pubmed/21390267
http://dx.doi.org/10.1371/journal.pone.0016934
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author Deshpande, Chandrika N.
Harrop, Stephen J.
Boucher, Yan
Hassan, Karl A.
Leo, Rosa Di
Xu, Xiaohui
Cui, Hong
Savchenko, Alexei
Chang, Changsoo
Labbate, Maurizio
Paulsen, Ian T.
Stokes, H. W.
Curmi, Paul M. G.
Mabbutt, Bridget C.
author_facet Deshpande, Chandrika N.
Harrop, Stephen J.
Boucher, Yan
Hassan, Karl A.
Leo, Rosa Di
Xu, Xiaohui
Cui, Hong
Savchenko, Alexei
Chang, Changsoo
Labbate, Maurizio
Paulsen, Ian T.
Stokes, H. W.
Curmi, Paul M. G.
Mabbutt, Bridget C.
author_sort Deshpande, Chandrika N.
collection PubMed
description BACKGROUND: The direct isolation of integron gene cassettes from cultivated and environmental microbial sources allows an assessment of the impact of the integron/gene cassette system on the emergence of new phenotypes, such as drug resistance or virulence. A structural approach is being exploited to investigate the modularity and function of novel integron gene cassettes. METHODOLOGY/PRINCIPAL FINDINGS: We report the 1.8 Å crystal structure of Cass2, an integron-associated protein derived from an environmental V. cholerae. The structure defines a monomeric beta-barrel protein with a fold related to the effector-binding portion of AraC/XylS transcription activators. The closest homologs of Cass2 are multi-drug binding proteins, such as BmrR. Consistent with this, a binding pocket made up of hydrophobic residues and a single glutamate side chain is evident in Cass2, occupied in the crystal form by polyethylene glycol. Fluorescence assays demonstrate that Cass2 is capable of binding cationic drug compounds with submicromolar affinity. The Cass2 module possesses a protein interaction surface proximal to its drug-binding cavity with features homologous to those seen in multi-domain transcriptional regulators. CONCLUSIONS/SIGNIFICANCE: Genetic analysis identifies Cass2 to be representative of a larger family of independent effector-binding proteins associated with lateral gene transfer within Vibrio and closely-related species. We propose that the Cass2 family not only has capacity to form functional transcription regulator complexes, but represents possible evolutionary precursors to multi-domain regulators associated with cationic drug compounds.
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spelling pubmed-30483802011-03-09 Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module Deshpande, Chandrika N. Harrop, Stephen J. Boucher, Yan Hassan, Karl A. Leo, Rosa Di Xu, Xiaohui Cui, Hong Savchenko, Alexei Chang, Changsoo Labbate, Maurizio Paulsen, Ian T. Stokes, H. W. Curmi, Paul M. G. Mabbutt, Bridget C. PLoS One Research Article BACKGROUND: The direct isolation of integron gene cassettes from cultivated and environmental microbial sources allows an assessment of the impact of the integron/gene cassette system on the emergence of new phenotypes, such as drug resistance or virulence. A structural approach is being exploited to investigate the modularity and function of novel integron gene cassettes. METHODOLOGY/PRINCIPAL FINDINGS: We report the 1.8 Å crystal structure of Cass2, an integron-associated protein derived from an environmental V. cholerae. The structure defines a monomeric beta-barrel protein with a fold related to the effector-binding portion of AraC/XylS transcription activators. The closest homologs of Cass2 are multi-drug binding proteins, such as BmrR. Consistent with this, a binding pocket made up of hydrophobic residues and a single glutamate side chain is evident in Cass2, occupied in the crystal form by polyethylene glycol. Fluorescence assays demonstrate that Cass2 is capable of binding cationic drug compounds with submicromolar affinity. The Cass2 module possesses a protein interaction surface proximal to its drug-binding cavity with features homologous to those seen in multi-domain transcriptional regulators. CONCLUSIONS/SIGNIFICANCE: Genetic analysis identifies Cass2 to be representative of a larger family of independent effector-binding proteins associated with lateral gene transfer within Vibrio and closely-related species. We propose that the Cass2 family not only has capacity to form functional transcription regulator complexes, but represents possible evolutionary precursors to multi-domain regulators associated with cationic drug compounds. Public Library of Science 2011-03-03 /pmc/articles/PMC3048380/ /pubmed/21390267 http://dx.doi.org/10.1371/journal.pone.0016934 Text en Deshpande 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
Deshpande, Chandrika N.
Harrop, Stephen J.
Boucher, Yan
Hassan, Karl A.
Leo, Rosa Di
Xu, Xiaohui
Cui, Hong
Savchenko, Alexei
Chang, Changsoo
Labbate, Maurizio
Paulsen, Ian T.
Stokes, H. W.
Curmi, Paul M. G.
Mabbutt, Bridget C.
Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module
title Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module
title_full Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module
title_fullStr Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module
title_full_unstemmed Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module
title_short Crystal Structure of an Integron Gene Cassette-Associated Protein from Vibrio cholerae Identifies a Cationic Drug-Binding Module
title_sort crystal structure of an integron gene cassette-associated protein from vibrio cholerae identifies a cationic drug-binding module
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3048380/
https://www.ncbi.nlm.nih.gov/pubmed/21390267
http://dx.doi.org/10.1371/journal.pone.0016934
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