TY - JOUR
T1 - Molecular determinants of Burkholderia pseudomallei BpeEF-OprC efflux pump expression
AU - Rhodes, Katherine A.
AU - Somprasong, Nawarat
AU - Podnecky, Nicole L.
AU - Mima, Takehiko
AU - Chirakul, Sunisa
AU - Schweizer, Herbert P.
N1 - Funding Information:
Research reported in this publication was supported by the National Institute of Allergy and Infectious Diseases of the NIH under Award Number U54 AI065357. The content is solely the responsibility of the authors and does not necessarily represent the official views of the
Funding Information:
Research reported in this publication was supported by the National Institute of Allergy and Infectious Diseases of the NIH under Award Number U54 AI065357. The content is solely the responsibility of the authors and does not necessarily represent the official views of the NIH. Additional funding was provided by University of Florida Preeminence start-up funds.
Publisher Copyright:
© 2018 The Authors.
PY - 2018/9
Y1 - 2018/9
N2 - Burkholderia pseudomallei, the cause of melioidosis, is intrinsically resistant to many antibiotics. Acquired multidrug resistance, including resistance to doxycycline and co-trimoxazole used for melioidosis eradication phase therapy, is mainly attributed to constitutive expression of the BpeEF-OprC efflux pump. Constitutive expression of this pump is caused by mutations affecting two highly similar LysR-type transcriptional regulators (LTTR), BpeT and BpeS, but their interaction with the regulatory region governing BpeEF-OprC expression has not yet been studied. The bpeE-bpeF-oprC genes are distally located in the llpE-bpeEbpeF-oprC operon. The llpE gene encodes a putative lipase/esterase of unknown function. We show that in a bpeT mutant llpE is constitutively co-transcribed with bpeE-bpeF-oprC. As expected from previous studies with B. cenocepacia, deletion of llpE does not affect antibiotic efflux. Using transcriptional bpeE′-lacZ fusions, we demonstrate that the 188 bp bpeT-llpE intergenic region located between bpeT and the llpE-bpeE-bpeF-oprC operon contains regulatory elements needed for control of bpeT and llpEbpeE-bpeF-oprC operon expression. By native polyacrylamide gel electrophoresis and electrophoretic mobility shift assays with purified recombinant BpeT and BpeS proteins, we show BpeT and BpeS form oligomers that share a 14 bp binding site overlapping the essential region required for llpE-bpeE-bpeF-oprC expression. The binding site contains the conserved T-N11-A LTTR box motif involved in binding of LysR proteins, which in concert with two other possible LTTR boxes may mediate BpeT and BpeS regulation of BpeEF-OprC expression. These studies form the basis for further investigation of BpeEF-OprC expression and regulation at the molecular level by yet unknown external stimuli.
AB - Burkholderia pseudomallei, the cause of melioidosis, is intrinsically resistant to many antibiotics. Acquired multidrug resistance, including resistance to doxycycline and co-trimoxazole used for melioidosis eradication phase therapy, is mainly attributed to constitutive expression of the BpeEF-OprC efflux pump. Constitutive expression of this pump is caused by mutations affecting two highly similar LysR-type transcriptional regulators (LTTR), BpeT and BpeS, but their interaction with the regulatory region governing BpeEF-OprC expression has not yet been studied. The bpeE-bpeF-oprC genes are distally located in the llpE-bpeEbpeF-oprC operon. The llpE gene encodes a putative lipase/esterase of unknown function. We show that in a bpeT mutant llpE is constitutively co-transcribed with bpeE-bpeF-oprC. As expected from previous studies with B. cenocepacia, deletion of llpE does not affect antibiotic efflux. Using transcriptional bpeE′-lacZ fusions, we demonstrate that the 188 bp bpeT-llpE intergenic region located between bpeT and the llpE-bpeE-bpeF-oprC operon contains regulatory elements needed for control of bpeT and llpEbpeE-bpeF-oprC operon expression. By native polyacrylamide gel electrophoresis and electrophoretic mobility shift assays with purified recombinant BpeT and BpeS proteins, we show BpeT and BpeS form oligomers that share a 14 bp binding site overlapping the essential region required for llpE-bpeE-bpeF-oprC expression. The binding site contains the conserved T-N11-A LTTR box motif involved in binding of LysR proteins, which in concert with two other possible LTTR boxes may mediate BpeT and BpeS regulation of BpeEF-OprC expression. These studies form the basis for further investigation of BpeEF-OprC expression and regulation at the molecular level by yet unknown external stimuli.
KW - Antibiotic resistance
KW - Burkholderia pseudomallei
KW - Efflux
KW - Melioidosis
KW - Regulation
UR - http://www.scopus.com/inward/record.url?scp=85053284036&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85053284036&partnerID=8YFLogxK
U2 - 10.1099/mic.0.000691
DO - 10.1099/mic.0.000691
M3 - Article
C2 - 30024368
AN - SCOPUS:85053284036
SN - 1350-0872
VL - 164
SP - 1156
EP - 1167
JO - Microbiology (United Kingdom)
JF - Microbiology (United Kingdom)
IS - 9
M1 - 000691
ER -