Literature DB >> 3372496

Sensitivity of mitochondrial Mg++ flux to reagents which affect K+ flux.

J J Diwan1, T Haley, C Moore.   

Abstract

Effects on Mg++ transport in rat liver mitochondria of three reagents earlier shown to affect mitochondrial K+ transport have been examined. The sulfhydryl reactive reagent phenylarsine oxide, which activates K+ flux into respiring mitochondria, also stimulates Mg++ influx. The K+ analog Ba++, when taken up into the mitochondrial matrix, inhibits influx of both K+ and Mg++. The effect on Mg++ influx is seen only if Mg++, which blocks Ba++ accumulation, is added after a preincubation with Ba++. Thus the inhibition of Mg++ influx appears to require interaction of Ba++ at the matrix side of the inner mitochondrial membrane. Added Ba++ also diminishes observed rates of Mg++ efflux but not K+ efflux. This difference may relate to a higher concentration of Ba++ remaining in the medium in the presence of Mg++ under the conditions of our experiments. Pretreatment of mitochondria with dicyclohexyl-carbodiimide (DCCD), under conditions which result in an increase in the apparent Km for K+ of the K+ influx mechanism, results in inhibition of Mg++ influx from media containing approximately 0.2 mM Mg++. The inhibitory effect of DCCD on Mg++ influx is not seen at higher external Mg++ (0.8 mM). This dependence on cation concentration is similar to the dependence on K+ concentration of the inhibitory effect of DCCD on K+ influx. Although mitochondrial Mg++ and K+ transport mechanisms exhibit similar reagent sensitivities, whether Mg++ and K+ share common transport catalysis remains to be established.

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Year:  1988        PMID: 3372496     DOI: 10.1007/bf00768398

Source DB:  PubMed          Journal:  J Bioenerg Biomembr        ISSN: 0145-479X            Impact factor:   2.945


  47 in total

1.  Comparison of effects of mersalyl & N-ethyl maleimide on mitochondrial K+ flux.

Authors:  J J Diwan; M Markoff; P H Lehrer
Journal:  Indian J Biochem Biophys       Date:  1977-12       Impact factor: 1.918

2.  Respiration-dependent efflux of magnesium ions from heart mitochondria.

Authors:  M Crompton; M Capano; E Carafoli
Journal:  Biochem J       Date:  1976-03-15       Impact factor: 3.857

3.  Energy dependent bivalent cation translocation in rat liver mitochondria.

Authors:  H Vainio; L Mela; B Chance
Journal:  Eur J Biochem       Date:  1970-02

4.  Translocation of some anions cations and acids in rat liver mitochondria.

Authors:  P Mitchell; J Moyle
Journal:  Eur J Biochem       Date:  1969-06

5.  Respiration-dependent uptake and extrusion of Mg2+ by isolated heart mitochondria.

Authors:  G P Brierley; M Davis; D W Jung
Journal:  Arch Biochem Biophys       Date:  1987-03       Impact factor: 4.013

6.  Ba2+ uptake and the inhibition by Ba2+ of K+ flux into rat liver mitochondria.

Authors:  J J Diwan
Journal:  J Membr Biol       Date:  1985       Impact factor: 1.843

7.  Effects of quinine on K+ transport in heart mitochondria.

Authors:  D W Jung; T Farooqui; E Utz; G P Brierley
Journal:  J Bioenerg Biomembr       Date:  1984-12       Impact factor: 2.945

8.  On the relative roles of Ca2+ and Mg2+ in regulating the endogenous K+/H+ exchanger of rat liver mitochondria.

Authors:  R A Nakashima; R S Dordick; K D Garlid
Journal:  J Biol Chem       Date:  1982-11-10       Impact factor: 5.157

9.  Effects on mitochondrial K flux of pH, K concentration, and N-ethyl maleimide.

Authors:  J J Diwan; P H Lehrer
Journal:  Membr Biochem       Date:  1978

10.  Stimulation of K+ flux into mitochondria by phenylarsine oxide.

Authors:  J J Diwan; J Srivastava; C Moore; T Haley
Journal:  J Bioenerg Biomembr       Date:  1986-04       Impact factor: 2.945

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