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Cooperative Ca2+ removal from presynaptic terminals of the spiny lobster neuromuscular junction.

机译:从棘突龙虾神经肌肉接头的突触前末端协同去除Ca2 +。

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摘要

Stimulation-induced changes in presynaptic free calcium concentration ([Ca2+]i) were examined by fluorescent imaging at the spiny lobster excitor motor nerve terminals. The Ca2+ removal process in the terminal was analyzed based on a single compartment model, under the assumption that the Ca2+ removal rate from the terminal cytoplasm is proportional to nth power of [Ca2+]i. During 100 nerve stimuli at 10-100 Hz, [Ca2+]i reached a plateau that increased in a less-than-linear way with stimulation frequency, and the power index, n, was about 2. In the decay time course after stimulation, n changed with the number of stimuli from about 1.4 after 10 stimuli to about 2 after 100 stimuli. With the change of n from 1.4 to 2, the rate became larger at high [Ca2+]i (>1.5 microM), but was smaller at low [Ca2+]i (<1 microM). These results suggest that a cooperative Ca2+ removal mechanism of n = 2, such as mitochondria, may play an important role in the terminal. This view is supported by the gradual increase in the [Ca2+]i plateau during long-term stimulation at 20-50 Hz for 60 s and by the existence of a very slow [Ca2+]i recovery process after this stimulation, both of which may be due to accumulation of Ca2+ in the organelle.
机译:刺激诱导的突触前游离钙浓度([Ca 2+] i)的变化通过在棘突龙虾兴奋器运动神经末梢的荧光成像检查。基于单个隔室模型分析终端中Ca2 +的去除过程,假设终端细胞质中Ca2 +的去除率与[Ca2 +] i的n次方成正比。在10-100 Hz的100次神经刺激过程中,[Ca2 +] i达到一个平台,该平台随刺激频率的增加而呈非线性增加,功率指数n约为2。在刺激后的衰减时间过程中, n随着刺激数目的变化而从10个刺激后的约1.4改变为100个刺激后的约2。随着n从1.4变为2,该比率在高[Ca2 +] i(> 1.5 microM)时变大,但在低[Ca2 +] i(<1 microM)时变小。这些结果表明,n = 2的协同Ca2 +去除机制(例如线粒体)可能在末端发挥重要作用。在20-50 Hz持续60 s的长期刺激过程中[Ca2 +] i平台逐渐增加,以及刺激后[Ca2 +] i恢复过程非常缓慢,都支持了该观点。是由于Ca2 +在细胞器中积累。

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