Abstract

Divalent cationic cyanine dyes, such as 2,2'-[3-[2-(3-butyl-4-methyl-2-thiazoline-2-ylidene)-ethylidene] propenylene]bis[3-butyl-4-methylthiazolinium iodide] and platonin induced large membrane current fluctuation when an electrical potential difference was applied across a planar phosphatidylserine bilayer membrane in medium containing inorganic phosphate (Pi). Without Pi, the dyes did not induce current fluctuation at concentrations of less than 30 microM. Noise analysis of current fluctuation indicated formation of a pathway for ion leakage. From measurements of the interfacial tension between oil and aqueous phases, and of water permeability across liposomal membranes, Pi was concluded to relax the phospholipid bilayer structure, resulting in great reduction in the concentration of the cyanine dye necessary for induction of the leakage-type pathway. In the presence of Pi, cationic ions such as tetrabutyl ammonium and tetraphenyl phosphonium did not induce the leakage-type pathway, although they had electrophoretic effects at high concentrations. These facts suggest that the mechanism of the uncoupling of oxidative phosphorylation by dicationic cyanine dyes in mitochondria is different from that of cationic uncouplers such as tetrabutyl ammonium ion.

Highlights

  • From the Faculty of Pharmaceutical Sciences, Toyamn Medicaland Pharmaceutical University, Toyama,930-01, Japan and $College of General Education and $Facultyof Pharmaceutical Sciences, University of Tokushima, Tokushima, 770, Japan

  • (3-butyl-4-methyl-2-thiazolihe-2-ylidene)-ethylidene]inside-negative membrane potential (4,5). propenylene]bis[3-butyl-4-methylthiazoliniumiodide] Inthis study, we addressed two questions using model and platonin induceldarge membrane current fluctua- membranes

  • When the electrical potential difference across a BLM of phosphatidylserine in 100 mM phosphate buffer was clamped at +30 mV, there was no detectable current fluctuation inthe absence of dye

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Summary

ROLE OF THE CYANINE DYE IN UNCOUPLING OF OXIDATIVE PHOSPHORYLATION*

Noriaki Takeguchi, TakuySaaitoh, Magotoshi Morii, Kenichi YoshikawaS, and Hiroshi Teradag. MATERIALS ANDMETHODS as tetrabutylammonium and tetraphenyl phosphonium The cationic cyanine dyes tri-S-C4(5)and tri-S-C7(5)were obtained didnotinducethe leakage-type pathway, from Nippon Kankoshikiso Research Laboratory (Okayama, Japan) They had electrophoreticeffects at high concentrations.The dyes were stored as concentrated solutions in dimethyl sulfoxide. The average diameter of the nium; TPP+, tetraphenyl phosphonium; BLM, planar bimolecular liposomes was about 0.8 pm as determined by the quasi-elastic light lipid membrane; Sf, power density spectrum of current noise; Pipes, scattering method (10).For measurements of water permeability with.

RESULTS
DISCUSSION
Aqueous phase
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