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在CACNA1A R192Q基因敲入小鼠的神经肌肉突触处,基因剂量依赖性递质释放变化是非进行性的,不会导致形态学改变或肌肉无力。

Gene dosage-dependent transmitter release changes at neuromuscular synapses of CACNA1A R192Q knockin mice are non-progressive and do not lead to morphological changes or muscle weakness.

作者信息

Kaja S, van de Ven R C G, Broos L A M, Veldman H, van Dijk J G, Verschuuren J J G M, Frants R R, Ferrari M D, van den Maagdenberg A M J M, Plomp J J

机构信息

Department of Neurology and Clinical Neurophysiology, Albinusdreef 2, 2333 ZA Leiden, The Netherlands.

出版信息

Neuroscience. 2005;135(1):81-95. doi: 10.1016/j.neuroscience.2005.04.069.

Abstract

Ca(v)2.1 channels mediate neurotransmitter release at the neuromuscular junction (NMJ) and at many central synapses. Mutations in the encoding gene, CACNA1A, are thus likely to affect neurotransmitter release. Previously, we generated mice carrying the R192Q mutation, associated with human familial hemiplegic migraine type-1, and showed first evidence of enhanced presynaptic Ca(2+) influx [Neuron 41 (2004) 701]. Here, we characterize transmitter release in detail at mouse R192Q NMJs, including possible gene-dosage dependency, progression of changes with age, and associated morphological damage and muscle weakness. We found, at low Ca(2+), decreased paired-pulse facilitation of evoked acetylcholine release, elevated release probability, and increased size of the readily releasable transmitter vesicle pool. Spontaneous release was increased over a broad range of Ca(2+) concentrations (0.2-5mM). Upon high-rate nerve stimulation we observed some extra rundown of transmitter release. However, no clinical evidence of transmission block or muscle weakness was found, assessed with electromyography, grip-strength testing and muscle contraction experiments. We studied both adult ( approximately 3-6 months-old) and aged ( approximately 21-26 months-old) R192Q knockin mice to assess effects of chronic elevation of presynaptic Ca(2+) influx, but found no additional or progressive alterations. No changes in NMJ size or relevant ultrastructural parameters were found, at either age. Our characterizations strengthen the hypothesis of increased Ca(2+) flux through R192Q-mutated presynaptic Ca(v)2.1 channels and show that the resulting altered neurotransmitter release is not associated with morphological changes at the NMJ or muscle weakness, not even in the longer term.

摘要

Ca(v)2.1通道介导神经肌肉接头(NMJ)以及许多中枢突触处的神经递质释放。因此,编码基因CACNA1A中的突变可能会影响神经递质释放。此前,我们培育出了携带与人类家族性偏瘫型偏头痛1型相关的R192Q突变的小鼠,并首次证明了突触前Ca(2+)内流增强[《神经元》41卷(2004年)第701页]。在此,我们详细表征了小鼠R192Q神经肌肉接头处的递质释放情况,包括可能的基因剂量依赖性、随年龄变化的进展情况以及相关的形态损伤和肌肉无力。我们发现,在低Ca(2+)浓度下,诱发的乙酰胆碱释放的双脉冲易化作用减弱、释放概率升高,且易于释放的递质囊泡池大小增加。在广泛的Ca(2+)浓度范围(0.2 - 5mM)内,自发释放增加。在高频神经刺激下,我们观察到递质释放出现了一些额外的减少。然而,通过肌电图、握力测试和肌肉收缩实验评估,未发现传导阻滞或肌肉无力的临床证据。我们研究了成年(约3 - 6个月大)和老年(约21 - 26个月大)的R192Q基因敲入小鼠,以评估突触前Ca(2+)内流长期升高的影响,但未发现额外的或渐进性的改变。在两个年龄段,均未发现神经肌肉接头大小或相关超微结构参数有变化。我们的表征强化了通过R192Q突变的突触前Ca(v)2.1通道Ca(2+)通量增加的假说,并表明由此导致的神经递质释放改变与神经肌肉接头处的形态变化或肌肉无力无关,即使在长期也无关。

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