Blaustein M P, Santiago E M
Biophys J. 1977 Oct;20(1):79-111. doi: 10.1016/S0006-3495(77)85538-0.
Calcium-45 efflux was measured in squid axons whose internal solute concentration was controlled by internal dialysis. Most of the Ca efflux requires either external Na (Na-Ca exchange) or external Ca plus in alkali metal ion (Ca-Ca exchange; cf. Blaustein & Russell, 1975). Both Na-Ca and Ca-Ca exchange are apparently mediated by a single mechanism because both are inhibited by Sr and Mn, and because addition of Na to an external medium optimal for Ca-Ca exchange inhibits Ca efflux. The transport involves simultaneous (as opposed to sequential) ion counterflow because the fractional saturation by internal Ca (Cai) does not affect the external Na (Nao) activation kinetics; also, Nao promotes Ca efflux whether or not an alkali metal ion is present inside, whereas Ca-Ca exchange requires alkali metal ions both internally and externally (i.e., internal and external sites must be appropriately loaded simultaneously). ATP increases the affinity of the transport mechanism for both Cai and Nao, but it does not affect the maximal transport rate at saturating [Ca2+]i and [Na+]o; this suggest that ATP may be acting as a catalyst of modulator, and not as an energy source. Hill plots of the Nao activation data yield slopes congruent to 3 for both ATP-depleted and ATP-fueled axons, compatible with a 3 Na+-for-1 Ca2+ exchange. With this stoichiometry, the Na electrochemical gradient alone could provide sufficient energy to maintain ionized [Ca2+]i in the physiological range (about 10(-7) M).
在通过内部透析控制内部溶质浓度的枪乌贼轴突中测量了钙-45外流。大部分钙外流需要外部钠(钠-钙交换)或外部钙加上碱金属离子(钙-钙交换;参见布劳斯坦和拉塞尔,1975年)。钠-钙交换和钙-钙交换显然由单一机制介导,因为两者都受到锶和锰的抑制,并且因为向最适合钙-钙交换的外部介质中添加钠会抑制钙外流。这种转运涉及同时(而非顺序)的离子逆流,因为内部钙(Cai)的分数饱和度不影响外部钠(Nao)的激活动力学;此外,无论内部是否存在碱金属离子,Nao都能促进钙外流,而钙-钙交换在内部和外部都需要碱金属离子(即,内部和外部位点必须同时适当加载)。ATP增加了转运机制对Cai和Nao的亲和力,但在饱和的[Ca2+]i和[Na+]o时不影响最大转运速率;这表明ATP可能作为调节剂的催化剂,而不是能量来源。对于耗尽ATP和补充ATP的轴突,Nao激活数据的希尔图产生的斜率均与3一致,这与3个Na+交换1个Ca2+相符。按照这种化学计量,仅钠电化学梯度就可以提供足够的能量将离子化的[Ca2+]i维持在生理范围内(约10^(-7)M)。