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鱿鱼轴突中生理配体与钙泵及钠钙交换体的相互作用。

Interactions of physiological ligands with the Ca pump and Na/Ca exchange in squid axons.

作者信息

DiPolo R, Beaugé L

出版信息

J Gen Physiol. 1984 Dec;84(6):895-914. doi: 10.1085/jgp.84.6.895.

Abstract

We have studied the interaction of physiological ligands other than Nai and Cai with the Ca pump and Na/Ca exchange in internally dialyzed squid axons. The results show the following. (a) Internal Mg2+ is an inhibitor of the Nao-dependent Ca efflux. At physiological Mg2+i (4 mM), the inhibition amounts to approximately 50%. The inhibition is partial and noncompetitive with Cai, and is not affected by Nai or ATP. The ATP-dependent uncoupled efflux is unaffected by Mgi up to 20 mM. Both components of the Ca efflux require Mg2+i for their activation by ATP. (b) At constant membrane potential, Ki is an important cofactor for the uncoupled Ca efflux. (c) Orthophosphate (Pi) activates the Nao-dependent Ca efflux without affecting the uncoupled component. Activation by Pi occurs only in the presence of Mg-ATP or hydrolyzable ATP analogues. Pi under physiological conditions has no effect on the uncoupled component; nevertheless, at alkaline pH, it inhibits the Ca pump, probably by product inhibition. (d) ADP is a potent inhibitor of the uncoupled Ca efflux. The Nao-dependent component is inhibited by ADP only at much higher ADP concentrations. These results indicate that (a) depending on the concentration of Ca2+i, Na+i Mg2+i, and Pi, the Na/Ca carrier can operate under a low- or high-rate regime; (b) the interactions of Mg2+i, Pi, Na+i, and ATP with the carrier are not interdependent; (c) the effect of Pi on the carrier-mediated Ca efflux resembles the stimulation of the Nao-dependent Ca efflux by internal vanadate; (d) the ligand effects on the uncoupled Ca efflux are of the type seen in the Ca pump in red cells and the sarcoplasmic reticulum.

摘要

我们研究了除Na⁺和Ca²⁺之外的生理配体与经内部透析的枪乌贼轴突中的Ca泵及Na⁺/Ca²⁺交换体的相互作用。结果如下:(a) 细胞内Mg²⁺是Na⁺依赖性Ca外流的抑制剂。在生理浓度的细胞内Mg²⁺(4 mM)时,抑制作用约达50%。该抑制作用是部分性的,且与Ca²⁺不具有竞争性,不受细胞内Na⁺或ATP影响。高达20 mM的细胞内Mg²⁺对ATP依赖性非耦联外流无影响。Ca外流的两个组分都需要细胞内Mg²⁺才能被ATP激活。(b) 在恒定膜电位下,K⁺是非耦联Ca外流的重要辅助因子。(c) 正磷酸盐(Pi)激活Na⁺依赖性Ca外流,而不影响非耦联组分。Pi的激活仅在存在Mg-ATP或可水解的ATP类似物时发生。生理条件下的Pi对非耦联组分无影响;然而,在碱性pH时,它可能通过产物抑制作用抑制Ca泵。(d) ADP是非耦联Ca外流的强效抑制剂。仅在高得多的ADP浓度下,Na⁺依赖性组分才被ADP抑制。这些结果表明:(a) 取决于Ca²⁺、Na⁺、Mg²⁺和Pi的浓度,Na⁺/Ca载体可在低速率或高速率模式下运行;(b) Mg²⁺、Pi、Na⁺和ATP与载体的相互作用并非相互依赖;(c) Pi对载体介导的Ca外流的作用类似于细胞内钒酸盐对Na⁺依赖性Ca外流的刺激;(d) 配体对非耦联Ca外流的作用与在红细胞和肌浆网中的Ca泵中所见的类型相同。

相似文献

4
Vanadate inhibits uncoupled Ca efflux but not Na--Ca exchange in squid axons.
Nature. 1979 Sep 20;281(5728):229-30. doi: 10.1038/281228a0.

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