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首页> 外文期刊>Journal of Neurophysiology >Flocculus Purkinje cell signals in mouse Cacna1a calcium channel mutants of escalating severity: An investigation of the role of firing irregularity in ataxia
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Flocculus Purkinje cell signals in mouse Cacna1a calcium channel mutants of escalating severity: An investigation of the role of firing irregularity in ataxia

机译:严重程度逐步升高的小鼠Cacna1a钙通道突变体中的Flocculus Purkinje细胞信号:共济失调中放电异常的作用研究

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Mutation of the Cacna1a gene for the P/Q (CaV2.1) calcium channel invariably leads to cerebellar dysfunction. The dysfunction has been attributed to disrupted rhythmicity of cerebellar Purkinje cells, but the hypothesis remains unproven. If irregular firing rates cause cerebellar dysfunction, then the irregularity and behavioral deficits should covary in a series of mutant strains of escalating severity. We compared firing irregularity in floccular and anterior vermis Purkinje cells in the mildly affected rocker and moderately affected tottering Cacna1a mutants and normal C57BL/6 mice. We also measured the amplitude and timing of modulations of floccular Purkinje cell firing rate during the horizontal vestibuloocular reflex (VOR, 0.25–1 Hz) and the horizontal and vertical optokinetic reflex (OKR, 0.125–1 Hz). We recorded Purkinje cells selective for rotational stimulation about the vertical axis (VAPCs) and a horizontal axis (HAPCs). Irregularity scaled with behavioral deficit severity in the flocculus but failed to do so in the vermis, challenging the irregularity hypothesis. Mutant VAPCs exhibited unusually strong modulation during VOR and OKR, the response augmentation scaling with phenotypic severity. HAPCs exhibited increased OKR modulation but in tottering only. The data contradict prior claims that modulation amplitude is unaffected in tottering but support the idea that attenuated compensatory eye movements in Cacna1a mutants arise from defective transfer of Purkinje cell signals to downstream circuitry, rather than attenuated synaptic transmission within the cerebellar cortex. Shifts in the relative sizes of the VAPC and HAPC populations raise the possibility that Cacna1a mutations influence the development of floccular zone architecture.
机译:P / Q(CaV2.1)钙通道的Cacna1a基因突变总是导致小脑功能障碍。该功能障碍归因于小脑浦肯野细胞的节律紊乱,但这一假设仍未得到证实。如果不规则的放电频率导致小脑功能障碍,那么在一系列严重程度不断提高的突变菌株中,不规则性和行为缺陷应消除。我们比较了在轻度受影响的摇杆和中度受影响的蹒跚的Cacna1a突变体和正常的C57BL / 6小鼠中的絮状和前verPurkinje细胞的射击不规则性。我们还测量了水平前庭小球反射(VOR,0.25-1 Hz)以及水平和垂直视动反射(OKR,0.125-1 Hz)期间絮状浦肯野细胞激发速率的调制幅度和时机。我们记录浦肯野细胞选择性地围绕垂直轴(VAPCs)和水平轴(HAPCs)旋转刺激。不规则性随絮凝物的行为缺陷严重程度而定,但未能在ver部表现出来,这挑战了不规则性假说。突变的VAPC在VOR和OKR期间表现出异常强烈的调节作用,响应增强随表型的严重程度而变化。 HAPC表现出增强的OKR调制,但仅表现为轻弹。该数据与先前的说法相矛盾,即调制幅度不会在抖动中受到影响,但支持这样的想法,即Cacna1a突变体中代偿性眼动减弱是由于Purkinje细胞信号向下游电路的转移不良,而不是小脑皮层内的突触传递减弱。 VAPC和HAPC种群相对大小的变化增加了Cacna1a突变影响絮凝区结构发展的可能性。

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