TY - JOUR
T1 - Structural contributions to multidrug recognition in the multidrug resistance (MDR) gene regulator, BmrR
AU - Bachas, Sharrol
AU - Eginton, Christopher
AU - Gunio, Drew
AU - Wade, Herschel
PY - 2011/7/5
Y1 - 2011/7/5
N2 - Current views of multidrug (MD) recognition focus on large drugbinding cavities with flexible elements. However, MD recognition in BmrR is supported by a small, rigid drug-binding pocket. Here, a detailed description of MD binding by the noncanonical BmrR protein is offered through the combined use of X-ray and solution studies. Low shape complementarity, suboptimal packing, and efficient burial of a diverse set of ligands is facilitated by an aromatic docking platform formed by a set of conformationally fixed aromatic residues, hydrophobic pincer pair that locks the different drug structures on the adaptable platform surface, and a trio of acidic residues that enables cation selectivity without much regard to ligand structure. Within the binding pocket is a set of BmrR-derived H-bonding donor and acceptors that solvate a wide range of ligand polar substituent arrangements in a manner analogous to aqueous solvent. Energetic analyses of MD binding by BmrR are consistent with structural data. A common binding orientation for the different BmrR ligands is in line with promiscuous allosteric regulation.
AB - Current views of multidrug (MD) recognition focus on large drugbinding cavities with flexible elements. However, MD recognition in BmrR is supported by a small, rigid drug-binding pocket. Here, a detailed description of MD binding by the noncanonical BmrR protein is offered through the combined use of X-ray and solution studies. Low shape complementarity, suboptimal packing, and efficient burial of a diverse set of ligands is facilitated by an aromatic docking platform formed by a set of conformationally fixed aromatic residues, hydrophobic pincer pair that locks the different drug structures on the adaptable platform surface, and a trio of acidic residues that enables cation selectivity without much regard to ligand structure. Within the binding pocket is a set of BmrR-derived H-bonding donor and acceptors that solvate a wide range of ligand polar substituent arrangements in a manner analogous to aqueous solvent. Energetic analyses of MD binding by BmrR are consistent with structural data. A common binding orientation for the different BmrR ligands is in line with promiscuous allosteric regulation.
KW - Ligand binding
KW - Ligand responsive transcription factor
KW - Molecular recognition
KW - Multidrug resistance
KW - Multispecificity
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U2 - 10.1073/pnas.1104850108
DO - 10.1073/pnas.1104850108
M3 - Article
C2 - 21690368
AN - SCOPUS:79960578420
SN - 0027-8424
VL - 108
SP - 11046
EP - 11051
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 27
ER -