Data di Pubblicazione:
1994
Abstract:
1. The rates of cation uptake, for either organic cations such as tetrapropylammonium, TPA(+), at variable tetraphenylboron concentrations, TPB-, or inorganic cations such as Mn2+, or K+ plus valinomycin, have been measured in mitochondria either respiring, under uncoupler titrations, or non-respiring, under variable K+ diffusion potentials. 2. The flow-force relationship for the respiration-coupled ion fluxes during titrations with uncouplers is almost identical to that obtained for the K+-diffusion driven fluxes. Similar results are obtained when TPA(+) is replaced with inorganic cations, either monovalent such as K+ (+ valinomycin), or divalent such as Mn2+ 3. By applying the Eyring analysis, as developed by Garlid et al. (Garlid, K.D., Beavis, A.D. and Ratkje, S.K. (1989) Biochim. Biophys. Acta 976, 109-121), from the flux-voltage relationships the values for the permeability coefficients and for the energy barriers have been obtained for the transport of the ion pair TPA(+)-TPB-, of Mn2+ and of K+ plus valinomycin, in non-respiring and in respiring, coupled and uncoupled, mitochondria. 4. The findings that the rates of respiration-coupled ion fluxes, at all values of membrane potential, are similar to the rates of the K+ diffusion potential-coupled ion fluxes and the similar pattern of the flux-voltage relationships during the titrations with uncouplers and artificial gradients indicate that the membrane permeability for ions is not modified by respiration.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
MITOCHONDRION; MEMBRANE PERMEABILITY; RESPIRATION; CATION; FLUX-VOLTAGE ANALYSIS
Elenco autori:
Luvisetto, Siro
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