首页> 美国卫生研究院文献>The Journal of Physiology >Calcium uptake of rat brain synaptosomes as a function of membrane potential under different depolarizing conditions.
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Calcium uptake of rat brain synaptosomes as a function of membrane potential under different depolarizing conditions.

机译:在不同的去极化条件下大鼠脑突触小体的钙摄取与膜电位的关系。

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摘要

The uptake of 45Ca2+ was measured in brain synaptosomes under conditions designed to depolarize the membranes. Membrane potential was estimated from the distribution of 86Rb+ between the intra- and extracellular compartments. K+ depolarization (8-60 mM) only increased "a2+ uptake beyond a threshold depolarization of about 10 mV, whereas veratridine (5-40 microM) induced an increased Ca2+ uptake at a concentration which depolarized the membrane less than this threshold. Ouabain did not enhance Ca2+ uptake, but the depolarization it produced did not reach threshold. Ca2+ influx already stimulated by K+ depolarization can be further enhanced by veratridine without any parallel change in membrane potential. Only the pathway mediating Ca2+ uptake during K+ depolarization can be inactivated: Ca2+ uptake evoked by K+ depolarization is decreased in synaptosomes pre-depolarized in the presence of a high concentration of K+. In contrast, pre-depolarization does not change Ca2+ uptake evoked by veratridine. Ca2+ channel blockers, such as verapamil and diltiazem but not nifedipine, in concentrations of 10-100 microM, decrease the stimulation of Ca2+ uptake by high K+ concentration without influencing depolarization, whereas the effect of veratridine on Ca2+ uptake is only inhibited when its effect on Na+ channels is also prevented. It is concluded that Ca2+ uptake during K+ depolarization proceeds through voltage-dependent Ca2+ channels similar to those of squid axon, whereas veratridine activates an additional Ca2+ entry, possibly via influx through open Na+ channels. Different quantitative relationships are found between acetylcholine release of synaptosomes and the amount of Ca2+ taken up by different mechanisms: the same amount of Ca2+ uptake is accompanied by a greater increase of acetylcholine release if the uptake is induced by K+ depolarization rather than veratridine.
机译:在旨在使膜去极化的条件下,在脑突触小体中测量了45Ca2 +的吸收。从细胞内和细胞外区室之间的86Rb +分布估计膜电位。 K +去极化(8-60 mM)仅使“ a2 +吸收”超过约10 mV的阈值去极化,而veratridine(5-40 microM)在使膜去极化小于该阈值的浓度下诱导增加的Ca2 +吸收。增强了Ca2 +的吸收,但其产生的去极化没有达到阈值;已经被K +去极化刺激的Ca2 +内流可以被藜芦r进一步增强,而膜电位没有任何平行变化;只有在K +去极化过程中介导Ca2 +吸收的途径才可以失活:在高浓度的K +存在下,预去极化的突触体中K +引起的去极化作用降低;相反,去极化前的作用不会改变维他命啶引起的Ca2 +吸收; Ca2 +通道阻滞剂,例如维拉帕米和地尔硫卓,而不是硝苯地平,不会浓度为10-100 microM,在不影响去极化的情况下,通过高K +浓度降低对Ca2 +吸收的刺激只有在也防止了维他命对Na +通道的影响时,才抑制维他命对Ca2 +吸收的影响。结论是,在K +去极化过程中,Ca2 +的吸收通过类似于鱿鱼轴突的电压依赖性Ca2 +通道进行,而藜芦烷可能通过开放的Na +通道流入而激活了另外的Ca2 +进入通道。在突触小体的乙酰胆碱释放与通过不同机制吸收的Ca2 +量之间发现了不同的定量关系:如果相同的Ca2 +吸收量是由K +去极化而不是维拉替丁引起的,则乙酰胆碱的释放量会增加。

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