Altamirano A A, Beaugé L
Cell Calcium. 1985 Dec;6(6):503-25. doi: 10.1016/0143-4160(85)90025-9.
Ca2+ efflux from dog red blood cells loaded with Ca2+ using the A23187 ionophore could be separated into two main components: (1) Mg- and ATP-dependent (active transport) and (2) dependent on external Na (K1/2 around 15 mM); at 80 microM internal free Ca the relative magnitudes of these fluxes were 70% and 30% respectively. The Na-dependent Ca2+ efflux had the following additional properties: (i) it was partially inhibited by ATP depletion or preincubation with vanadate, but it was not affected by Mg2+ depletion; (ii) it failed to be stimulated by external monovalent cations other than Na: (iii) it was stimulated by reduction in the internal Na+ concentration. Both active and Na-dependent Ca2+ efflux remained unchanged in hypotonic solutions or in solutions with alkaline pH (8.5). In cells containing ATP and Mg2+, external Ca2+ inhibited Ca2+ efflux (K1/2 around 1 mM); on the other hand, in Mg-free dog red cells external Ca2+ stimulated Ca2+ efflux (K1/2 about 30 microM). In Mg-depleted red cells incubated in the absence of external Na2+, Ca2+ influx as a function of external Ca2+ followed a monotonically saturable function (K1/2 around 20 microM): addition of Na resulted in (i) inhibition of Ca2+ influx and (ii) a sigmoid relationship between flux and external Ca2+. Intracellular Ca2+ stimulated the external Na-dependent Ca2+ efflux along a sigmoid curve (K1/2 around 30 microM); on the other hand the Ca pump had a biphasic response to internal Ca2+: stimulation at low internal Ca2+ (K1/2 between 1 and 10 microM), followed by a decline at internal Ca2+ concentrations higher than 50 microM.
使用A23187离子载体加载Ca2+的犬红细胞的Ca2+外流可分为两个主要成分:(1) 依赖Mg和ATP的(主动转运)和(2) 依赖外部Na的(K1/2约为15 mM);在细胞内游离Ca为80 μM时,这些通量的相对大小分别为70%和30%。依赖Na的Ca2+外流具有以下其他特性:(i) 它被ATP耗竭或与钒酸盐预孵育部分抑制,但不受Mg2+耗竭影响;(ii) 除Na外,它不受外部单价阳离子刺激;(iii) 它被细胞内Na+浓度降低所刺激。主动和依赖Na的Ca2+外流在低渗溶液或碱性pH(8.5)溶液中均保持不变。在含有ATP和Mg2+的细胞中,外部Ca2+抑制Ca2+外流(K1/2约为1 mM);另一方面,在无Mg的犬红细胞中,外部Ca2+刺激Ca2+外流(K1/2约为30 μM)。在无外部Na2+的情况下孵育的Mg耗竭红细胞中,作为外部Ca2+函数的Ca2+内流遵循单调饱和函数(K1/2约为20 μM):添加Na导致(i) Ca2+内流抑制和(ii) 通量与外部Ca2+之间的S形关系。细胞内Ca2+沿S形曲线刺激外部依赖Na的Ca2+外流(K1/2约为30 μM);另一方面,Ca泵对细胞内Ca2+有双相反应:在低细胞内Ca2+(K1/2在1至10 μM之间)时刺激,随后在细胞内Ca2+浓度高于50 μM时下降。