TY - JOUR
T1 - Energetics of wild-type and mutant multidrug resistance secondary transporter LmrP of Lactococcus lactis
AU - Mazurkiewicz, Piotr
AU - Driessen, Arnold J.M.
AU - Konings, Wil N.
N1 - Relation: http://www.rug.nl/gbb/
date_submitted:2007
Rights: University of Groningen, Groningen Biomolecular Sciences and Biotechnology Institute
PY - 2004
Y1 - 2004
N2 - LmrP, a proton/multidrug antiporter of Lactococcus lactis, transports a variety of cationic substrates. Previously, two membrane-embedded acidic residues, Asp142 and Glu327, have been reported to be important for multidrug transport activity of LmrP. Here we show that neither Glu327 nor Asp142 is essential for ethidium binding but that Glu327 is a critical residue for the high affinity binding of Hoechst 33342. Substitution of these two residues, however, negatively influences the transport activity. The energetics of transport was studied of two closely related cationic substrates ethidium and propidium that carry one and two positive charges, respectively. Extrusion of monovalent ethidium is dependent on both the electrical membrane potential (Δψ) and transmembrane proton gradient (ΔpH), while extrusion of propidium predominantly depends on the ΔpH only. The LmrP mutants D142C and E327C, however, mediate electroneutral ethidium extrusion, but are unable to mediate ΔpH-dependent extrusion of propidium. These data indicate that Asp142 and Glu327 are involved in proton translocation.
AB - LmrP, a proton/multidrug antiporter of Lactococcus lactis, transports a variety of cationic substrates. Previously, two membrane-embedded acidic residues, Asp142 and Glu327, have been reported to be important for multidrug transport activity of LmrP. Here we show that neither Glu327 nor Asp142 is essential for ethidium binding but that Glu327 is a critical residue for the high affinity binding of Hoechst 33342. Substitution of these two residues, however, negatively influences the transport activity. The energetics of transport was studied of two closely related cationic substrates ethidium and propidium that carry one and two positive charges, respectively. Extrusion of monovalent ethidium is dependent on both the electrical membrane potential (Δψ) and transmembrane proton gradient (ΔpH), while extrusion of propidium predominantly depends on the ΔpH only. The LmrP mutants D142C and E327C, however, mediate electroneutral ethidium extrusion, but are unable to mediate ΔpH-dependent extrusion of propidium. These data indicate that Asp142 and Glu327 are involved in proton translocation.
KW - Lactococcus lactis
KW - LmrP
KW - Energetics
U2 - 10.1016/j.bbabio.2004.06.004
DO - 10.1016/j.bbabio.2004.06.004
M3 - Article
VL - 1658
SP - 252
EP - 261
JO - Biochimica et Biophysica Acta - Bioenergetics
JF - Biochimica et Biophysica Acta - Bioenergetics
IS - 3
ER -