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Confocal microscopy reveals coordinated calcium fluctuations and oscillations in synaptic boutons

机译:共聚焦显微镜显示突触钮扣中协调的钙波动和振荡

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摘要

Calcium ions are one of the main factors regulating quantal transmitter release and thus synaptic transmission in the nervous system. Using confocal microscopy, fluorescent imaging with the calcium indicator Rhod-2, and time series analysis, we show that the levels of calcium ions inside single synaptic boutons of the lizard neuromuscular junction are not constant at rest, but undergo coordinated fluctuations in the space domain, which cover a large fraction of the synaptic bouton. Furthermore, oscillations in intracellular calcium were frequently observed in the time domain. Control experiments showed no coordinated fluctuations or oscillations at locations outside the synaptic boutons. Edge detection analysis showed that the coordinated fluctuations and oscillations were not due to movement artifacts. No coordinated fluctuations and oscillations were seen when similar measurements and analyses were performed on artificial fluorescent beads. A variance analysis was performed on artificial fluorescent beads and on synaptic boutons. The variance of the fluorescent signal at the synaptic boutons was larger than the variance in artificial beads with the same mean fluorescence. This extra variance was greatly reduced when the extracellular calcium concentration was decreased from 2.0 mM to 0.4 mM. We conclude that the coordinated fluctuations and oscillations in the calcium-induced fluorescence at the synaptic boutons are genuine biological phenomena and may be of significance in the regulation of transmitter release.
机译:钙离子是调节定量递质释放并因此调节神经系统中突触传递的主要因素之一。使用共聚焦显微镜,用钙指示剂Rhod-2进行荧光成像和时间序列分析,我们显示了蜥蜴神经肌肉接头的单个突触钮扣内的钙离子水平在静止时不是恒定的,而是在空间域中经历协调的波动,其中大部分覆盖了突触按钮。此外,在时域中经常观察到细胞内钙的振荡。对照实验表明,在突触钮扣外的位置没有协调的波动或振荡。边缘检测分析表明,协调的波动和振荡不是由于运动伪影引起的。当对人造荧光珠进行类似的测量和分析时,没有观察到协调的波动和振荡。对人造荧光珠和突触钮扣进行了方差分析。突触钮扣处荧光信号的方差大于具有相同平均荧光的人造珠的方差。当细胞外钙浓度从2.0 mM降低到0.4 mM时,这种额外的差异被大大降低。我们得出结论,在突触钮扣中钙诱导的荧光中的协调波动和振荡是真正的生物学现象,并且可能在调节递质释放中具有重要意义。

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