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QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†

[Image: see text] The Staphylococcus aureus multidrug binding protein QacR binds to a broad spectrum of structurally dissimilar cationic, lipophilic drugs. Our previous structural analyses suggested that five QacR glutamic acid residues are critical for charge neutralization and specification of cer...

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Autores principales: Peters, Kate M., Schuman, Jason T., Skurray, Ronald A., Brown, Melissa H., Brennan, Richard G., Schumacher, Maria A.
Formato: Texto
Lenguaje:English
Publicado: American Chemical Society 2008
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2646753/
https://www.ncbi.nlm.nih.gov/pubmed/18616285
http://dx.doi.org/10.1021/bi8008246
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author Peters, Kate M.
Schuman, Jason T.
Skurray, Ronald A.
Brown, Melissa H.
Brennan, Richard G.
Schumacher, Maria A.
author_facet Peters, Kate M.
Schuman, Jason T.
Skurray, Ronald A.
Brown, Melissa H.
Brennan, Richard G.
Schumacher, Maria A.
author_sort Peters, Kate M.
collection PubMed
description [Image: see text] The Staphylococcus aureus multidrug binding protein QacR binds to a broad spectrum of structurally dissimilar cationic, lipophilic drugs. Our previous structural analyses suggested that five QacR glutamic acid residues are critical for charge neutralization and specification of certain drugs. For example, E57 and E58 interact with berberine and with one of the positively charged moieties of the bivalent drug dequalinium. Here we report the structural and biochemical effects of substituting E57 and E58 with alanine and glutamine. Unexpectedly, individual substitutions of these residues did not significantly affect QacR drug binding affinity. Structures of QacR(E57Q) and QacR(E58Q) bound to dequalinium indicated that E57 and E58 are redundant for charge neutralization. The most significant finding was that berberine was reoriented in the QacR multidrug binding pocket so that its positive charge was neutralized by side chain oxygen atoms and aromatic residues. Together, these data emphasize the remarkable versatility of the QacR multidrug binding pocket, illustrating that the capacity of QacR to bind myriad cationic drugs is largely governed by the presence in the pocket of a redundancy of polar, charged, and aromatic residues that are capable of electrostatic neutralization.
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spelling pubmed-26467532009-03-20 QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization† Peters, Kate M. Schuman, Jason T. Skurray, Ronald A. Brown, Melissa H. Brennan, Richard G. Schumacher, Maria A. Biochemistry [Image: see text] The Staphylococcus aureus multidrug binding protein QacR binds to a broad spectrum of structurally dissimilar cationic, lipophilic drugs. Our previous structural analyses suggested that five QacR glutamic acid residues are critical for charge neutralization and specification of certain drugs. For example, E57 and E58 interact with berberine and with one of the positively charged moieties of the bivalent drug dequalinium. Here we report the structural and biochemical effects of substituting E57 and E58 with alanine and glutamine. Unexpectedly, individual substitutions of these residues did not significantly affect QacR drug binding affinity. Structures of QacR(E57Q) and QacR(E58Q) bound to dequalinium indicated that E57 and E58 are redundant for charge neutralization. The most significant finding was that berberine was reoriented in the QacR multidrug binding pocket so that its positive charge was neutralized by side chain oxygen atoms and aromatic residues. Together, these data emphasize the remarkable versatility of the QacR multidrug binding pocket, illustrating that the capacity of QacR to bind myriad cationic drugs is largely governed by the presence in the pocket of a redundancy of polar, charged, and aromatic residues that are capable of electrostatic neutralization. American Chemical Society 2008-07-11 2008-08-05 /pmc/articles/PMC2646753/ /pubmed/18616285 http://dx.doi.org/10.1021/bi8008246 Text en Copyright © 2008 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org. 40.75
spellingShingle Peters, Kate M.
Schuman, Jason T.
Skurray, Ronald A.
Brown, Melissa H.
Brennan, Richard G.
Schumacher, Maria A.
QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†
title QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†
title_full QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†
title_fullStr QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†
title_full_unstemmed QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†
title_short QacR−Cation Recognition Is Mediated by a Redundancy of Residues Capable of Charge Neutralization†
title_sort qacr−cation recognition is mediated by a redundancy of residues capable of charge neutralization†
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2646753/
https://www.ncbi.nlm.nih.gov/pubmed/18616285
http://dx.doi.org/10.1021/bi8008246
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