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Monitoring of the Proton Electrochemical Gradient in Reconstituted Vesicles: Quantitative Measurements of Both Transmembrane Potential and Intravesicular pH by Ratiometric Fluorescent Probes
Authors:Ale? Holoubek  Jaroslav Ve?e?  Karel Sigler
Institution:(1) Institute of Physical Biology, University of South Bohemia, Nové Hrady, Czech Republic;(2) Institute of Systems Biology and Ecology, Academy of Sciences of the Czech Republic, Nové Hrady, Czech Republic;(3) Institute of Physics, Faculty of Mathematics and Physics, Charles University, Prague, Czech Republic;(4) Institute of Microbiology, Academy of Sciences of the Czech Republic, Prague, Czech Republic;(5) Department of Genetics and Microbiology, Faculty of Science, Charles University in Prague, Viničná 5, 128 44 Praha 2, Prague, Czech Republic
Abstract:Proteoliposomes carrying reconstituted yeast plasma membrane H+-ATPase in their lipid membrane or plasma membrane vesicles are model systems convenient for studying basic electrochemical processes involved in formation of the proton electrochemical gradient (ΔμH +) across the microbial or plant cell membrane. Δψ- and pH-sensitive fluorescent probes were used to monitor the gradients formed between inner and outer volume of the reconstituted vesicles. The Δψ-sensitive fluorescent ratiometric probe oxonol VI is suitable for quantitative measurements of inside-positive Δψ generated by the reconstituted H+-ATPase. Its Δψ response can be calibrated by the K+/valinomycin method and ratiometric mode of fluorescence measurements reduces undesirable artefacts. In situ pH-sensitive fluorescent probe pyranine was used for quantitative measurements of pH inside the proteoliposomes. Calibration of pH-sensitive fluorescence response of pyranine entrapped inside proteoliposomes was performed with several ionophores combined in order to deplete the gradients passively formed across the membrane. Presented model system offers a suitable tool for simultaneous monitoring of both components of the proton electrochemical gradient, Δψ and ΔpH. This approach should help in further understanding how their formation is interconnected on biomembranes and even how transport of other ions is combined to it.
Keywords:Transmembrane potential  Intracellular pH  Oxonol dyes  Pyranine  Proteoliposomes
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