首页> 外文期刊>American Journal of Physiology >Dual effect of Nai+ on Ca2+ influx through the Na+/Ca2+ exchanger in dialyzed squid axons. Experimental data confirming the validity of the squid axon kinetic model.
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Dual effect of Nai+ on Ca2+ influx through the Na+/Ca2+ exchanger in dialyzed squid axons. Experimental data confirming the validity of the squid axon kinetic model.

机译:Nai +对透析鱿鱼轴突中Na + / Ca2 +交换剂对Ca2 +流入的双重作用。实验数据证实了鱿鱼轴突动力学模型的有效性。

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摘要

We propose a steady-state kinetic model for the squid Na(+)/Ca(2+) exchanger that differs from other current models of regulation in that it takes into account, within a single kinetic scheme, all ionic [intracellular Ca(2+) (Ca(i)(2+))-intracellular Na(+) (Na(i)(+))-intracellular H(i)(+)] and metabolic (ATP) regulations of the exchanger in which the Ca(i)(2+)-regulatory pathway plays the central role in regulation. Although the integrated ionic-metabolic model predicts all squid steady-state experimental data on exchange regulation, a critical test for the validity of it is the predicted dual effect of Na(i)(+) on steady-state Ca(2+) influx through the exchanger. To test this prediction, an improved technique for the estimation of isotope fluxes in squid axons was developed, which allows sequential measurements of ion influx and effluxes. With this method, we report here two novel observations of the squid axon Na(+)/Ca(2+) exchanger. First, at intracellular pH (7.0) and in the absence of MgATP, Na(i)(+) has a dual effect on Ca(2+) influx: inhibition at low concentrations followed by stimulation at high Na(i)(+) concentrations, reaching levels higher than those seen without Na(i)(+). Second, in the presence of MgATP, the biphasic response to Na(i)(+) disappears and is replaced by a sigmoid activation. Furthermore, the model predicts that Ca(2+) efflux is monotonically inhibited by Na(i)(+), more pronouncedly without than with MgATP. These results are predicted by the proposed kinetic model. Although not fully applicable to all exchangers, this scheme might provide some insights on expected net Ca(2+) movements in other tissues under a variety of intracellular ionic and metabolic conditions.
机译:我们提出了鱿鱼Na(+)/ Ca(2+)交换子的稳态动力学模型,该模型不同于其他当前的调节模型,因为它在单个动力学方案中考虑了所有离子[细胞内Ca(2) +)(Ca(i)(2 +))-胞内Na(+)(Na(i)(+))-胞内H(i)(+)]和其中Ca的交换子的代谢(ATP)法规(i)(2 +)-调节途径在调节中起核心作用。尽管集成的离子-代谢模型预测了所有鱿鱼稳态的交换调控实验数据,但对其有效性的关键测试是Na(i)(+)对稳态Ca(2+)流入的双重影响。通过交换器。为了检验这一预测,开发了一种用于估算鱿鱼轴突中同位素通量的改进技术,该技术可以连续测量离子的流入和流出。通过这种方法,我们在这里报告了鱿鱼轴突Na(+)/ Ca(2+)交换子的两个新发现。首先,在细胞内pH(7.0)和不存在MgATP的情况下,Na(i)(+)对Ca(2+)的流入具有双重影响:在低浓度下抑制,然后在高Na(i)(+)刺激下浓度高于没有Na(i)(+)时的浓度。第二,在MgATP的存在下,对Na(i)(+)的双相反应消失,被S型激活所代替。此外,该模型预测,Na(i)(+)单调抑制Ca(2+)外排,而与MgATP相比,则更为明显。这些结果由提出的动力学模型预测。尽管并不完全适用于所有交换器,但该方案可能会在各种细胞内离子和代谢条件下,对其他组织中的预期净Ca(2+)运动提供一些见解。

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