1981PLANT PHYSIOLOGYOpen access

Mechanisms of Passive Potassium Influx in Corn Mitochondria

M. Jane Fluegel, J. B. Hanson

Open full text 8 citations

Abstract

Corn mitochondria in 100 millimolar KCl show accelerated passive swelling upon addition of uncoupler. This unusual response has been compared with swelling produced by valinomycin, tripropyltin, and nigericin. It is concluded that the driving force for swelling lies with the chloride gradient and a high P(Cl):P(K) ratio, the chloride influx creating a negative membrane potential. The action of uncoupler is to facilitate K(+) influx via the endogenous H(+)/K(+) antiporter. The antiporter is active over the pH range 6 to 8, is not sensitive to Mg(2+) concentration, and is not inactivated by aging. It is not clear why corn mitochondria show this exceptional activity of the H(+)/K(+) antiporter in K(+) influx. It is speculated that during isolation the antiporter may be exposed or activated, and that it contributes to cyclic K(+) transport and high State 4 respiration rates.

About this research paper

What this paper is about

Corn mitochondria in 100 millimolar KCl show accelerated passive swelling upon addition of uncoupler. This unusual response has been compared with swelling produced by valinomycin, tripropyltin, and nigericin. It is concluded that the driving force for swelling lies with the chloride gradient and a high P(Cl):P(K) ratio, the chloride influx creating a negative membrane potential. The action of uncoupler is to facilitate K(+) influx via the endogenous H(+)/K(+) antiporter. The antiporter is active over the pH range 6 to 8, is not sensitive to Mg(2+) concentration, and is not inactivated by aging. It is not clear why corn mitochondria show this exceptional activity of the H(+)/K(+) antiporter in K(+) influx. It is speculated that during isolation the antiporter may be exposed or activated, and that it contributes to cyclic K(+) transport and high State 4 respiration rates.

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Corn mitochondria in 100 millimolar KCl show accelerated passive swelling upon addition of uncoupler. This unusual response has been compared with swelling produced by valinomycin, tripropyltin, and nigericin. It is concluded that the driving force for swelling lies with the chloride gradient and a high P(Cl):P(K) ratio, the chloride influx creating a negative membrane potential. The action of uncoupler is to facilitate K(+) influx via the endogenous H(+)/K(+) antiporter. The antiporter is active over the pH range 6 to 8, is not sensitive to Mg(2+) concentration, and is not inactivated by aging. It is not clear why corn mitochondria show this exceptional activity of the H(+)/K(+) antiporter in K(+) influx. It is speculated that during isolation the antiporter may be exposed or activated, and that it contributes to cyclic K(+) transport and high State 4 respiration rates.

Key concepts: Antiporter, Valinomycin, Nigericin, Chemistry, Mitochondrion, Potassium, Biophysics, Membrane potential

Related papers

Back to paper searchBrowse research topicsOriginal source
Mechanisms of Passive Potassium Influx in Corn Mitochondria — Research Paper | ScholarLens