首页> 美国卫生研究院文献>The Journal of Physiology >The early time course of potassium-stimulated calcium uptake in presynaptic nerve terminals isolated from rat brain.
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The early time course of potassium-stimulated calcium uptake in presynaptic nerve terminals isolated from rat brain.

机译:从大鼠脑中分离出的突触前神经末梢中钾刺激的钙摄取的早期过程。

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摘要

K-stimulated (voltage-dependent) 45Ca uptake in rat brain synaptosomes was measured at times ranging from 0.1 to 10 s, in experiments that employed a rapid-mixing device to initiate and terminate radiotracer uptake. The rapid mixing did not disrupt the functional integrity of the synaptosomes, as judged by their ability to take up Ca. In solutions containing a low (0.02 mM) concentration of Ca, the rate of K-stimulated Ca uptake measured after 0-0.12 s depolarization was 8 times greater than that measured after 5-10 s of depolarization. The decline in rate of K-stimulated Ca uptake was not due to tracer backflux from the synaptosomes, nor to Ca loading of the nerve terminals, since it also occurred after synaptosomes were depolarized in solutions without Ca. It is suggested that this decline in rate of Ca uptake after depolarization was due to inactivation of voltage-dependent Ca channels in the nerve terminals. This inactivation appeared to be voltage rather than Ca dependent. The extent to which K-stimulated Ca uptake declined after depolarization in high-K solution depended on the K concentration that was used to depolarize the synaptosomes. Whereas pre-incubation in solution with one-half of the Na replaced by K significantly reduced subsequent K-stimulated Ca uptake, pre-incubation in non-depolarizing solution, with one-half of the Na replaced by choline, had no significant effect on subsequent K-stimulated Ca uptake. In solutions containing a high (0.5-2 mM) concentration of Ca, the rate of K-stimulated Ca uptake measured after 0-0.12 s was 40 times greater than that measured after 5-10 s. High Ca accelerated the rate at which K-stimulated Ca uptake declined with prolonged depolarization. The effect was mimicked by high (10 mM) concentrations of Sr, but not of Ba. The accelerated rate of decline observed with high Ca could be either a direct effect of Ca on the Ca channels or, more probably, an indirect effect of Ca loading on the nerve terminals. The apparent efficacy of several Ca-channel blockers (Ni, La and verapamil) in reducing K-stimulated Ca uptake was enhanced when the synaptosomes were depolarized in the presence of inhibitory agents for brief (less than 1 s) intervals before K-stimulated Ca uptake was measured.
机译:在采用快速混合装置启动和终止放射性示踪剂摄取的实验中,在0.1到10 s的时间范围内测量了大鼠脑突触小体中K刺激(依赖电压)的45Ca摄取。通过吸收钙的能力判断,快速混合不会破坏突触小体的功能完整性。在含有低浓度(0.02 mM)Ca的溶液中,去极化0-0.12 s后测得的K刺激的Ca吸收速率是去极化5-10 s后测得的K刺激速率的8倍。 K刺激的Ca吸收速率的下降不是由于突触体产生的示踪剂反流,也不是由于神经末梢的Ca负载所致,因为它也发生在没有Ca的溶液中使突触体去极化后。提示去极化后Ca摄取速率的下降是由于神经末梢的电压依赖性Ca通道失活所致。这种失活似乎是电压而不是Ca依赖性的。高K溶液中去极化后K刺激的Ca吸收下降的程度取决于用来使突触体去极化的K浓度。在溶液中预孵育用Na的一半Na代替K可以显着减少随后的K刺激的Ca吸收,而在非去极化溶液中预孵育用Na的一半Na被胆碱替代,则对随后的钾刺激钙的吸收。在含有高浓度(0.5-2 mM)Ca的溶液中,0-0.12 s后测得的K刺激的Ca吸收速率是5-10 s后测得的40倍。高钙加速了K刺激的Ca吸收随去极化时间延长而下降的速度。高浓度(10 mM)的Sr而不是Ba模仿了这种效果。高钙观察到的加速下降速度可能是钙对钙通道的直接作用,或者更可能是钙负荷对神经末梢的间接作用。当在K刺激的Ca之前短暂地(少于1 s)间隔内使抑制剂抑制突触体去极化时,几种Ca通道阻滞剂(Ni,La和Verapamil)减少K刺激的Ca吸收的表观功效得到增强。测量摄取。

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