Féray J C, Garay R
J Biol Chem. 1987 Apr 25;262(12):5763-8.
Mg2+ efflux in rat erythrocytes was stimulated by increases in external Na+ concentration following a Michaelian-like function with an apparent dissociation constant (KNa) of 11 +/- 3 mM (mean +/- S.D. of three experiments) and a variable maximal rate ranging from 150 to 1200 mumol (liter (1) cells X h)-1. Na+-stimulated Mg2+ efflux was inhibited by quinidine and by ATP depletion. In the absence of external Na+, Mg2+ efflux was stimulated by increases in external Mn2+ concentration following a Michaelian-like function with an apparent dissociation constant (KMn) of 35 +/- 15 microM (mean +/- S.D. of four experiments) and a variable maximal rate ranging from 350 to 1400 mumol (1 cells X h)-1. Mn2+-stimulated Mg2+ efflux was inhibited by quinidine, by ATP depletion, and by increasing the external Na+ concentration. Quinidine-sensitive (or ATP-dependent) Mg2+ efflux exhibited very similar values when compared with quinidine-sensitive (or ATP-dependent) Mn2+ influx. Mn2+ efflux in rat erythrocytes (loaded with total internal Mn2+ contents of 230-450 mumol/l cells) was stimulated by increases in external Na+ concentration and inhibited by quinidine. In the absence of external Na+, Mn2+ efflux was stimulated by increases in external Mg2+ concentration following a Michaelian-like function with an apparent dissociation constant (KMg) of about 35 +/- 5 microM (mean +/- range of two experiments) and a maximal rate of about 60-100 mumol (1 cells X h)-1. In conclusion, the Na+-stimulated Mg2+ carrier of rat erythrocytes may catalyze a one-to-one and reversible Mn2+:Mg2+ exchange in the absence of external Na+.
随着外部钠离子浓度升高,大鼠红细胞中的镁离子外流受到刺激,呈现出类似米氏函数的关系,其表观解离常数(KNa)为11±3 mM(三次实验的平均值±标准差),最大速率可变,范围为150至1200 μmol/(升细胞×小时)-1。奎尼丁和ATP耗竭可抑制钠离子刺激的镁离子外流。在无外部钠离子的情况下,随着外部锰离子浓度升高,镁离子外流受到刺激,呈现出类似米氏函数的关系,其表观解离常数(KMn)为35±15 μM(四次实验的平均值±标准差),最大速率可变,范围为350至1400 μmol/(细胞×小时)-1。锰离子刺激的镁离子外流受到奎尼丁、ATP耗竭以及外部钠离子浓度升高的抑制。与奎尼丁敏感(或ATP依赖)的锰离子内流相比,奎尼丁敏感(或ATP依赖)的镁离子外流表现出非常相似的值。大鼠红细胞中的锰离子外流(细胞内总锰离子含量为230 - 450 μmol/升细胞)随着外部钠离子浓度升高而受到刺激,并被奎尼丁抑制。在无外部钠离子的情况下,随着外部镁离子浓度升高,锰离子外流受到刺激,呈现出类似米氏函数的关系,其表观解离常数(KMg)约为35±5 μM(两次实验的平均值±范围),最大速率约为60 - 100 μmol/(细胞×小时)-1。总之,在无外部钠离子的情况下,大鼠红细胞中钠离子刺激的镁离子载体可能催化一对一且可逆的锰离子:镁离子交换。