Todorov Boyan, van de Ven Rob C G, Kaja Simon, Broos Ludo A M, Verbeek Sjef J, Plomp Jaap J, Ferrari Michel D, Frants Rune R, van den Maagdenberg Arn M J M
Department of Human Genetics, Leiden University Medical Centre, Leiden, The Netherlands.
Genesis. 2006 Dec;44(12):589-94. doi: 10.1002/dvg.20255.
Ca(v)2.1 (P/Q-type) voltage-gated calcium channels play an important role in neurotransmitter release at many brain synapses and at the neuromuscular junction. Mutations in the CACNA1A gene, encoding the pore forming alpha(1) subunit of Ca(v)2.1 channels, are associated with a wide spectrum of neurological disorders. Here we generated mice with a conditional, floxed, Cacna1a allele without any overt phenotype. Deletion of the floxed Cacna1a allele resulted in ataxia, dystonia, and lethality during the fourth week, a severe phenotype similar to conventional Ca(v)2.1 knockout mice. Although neurotransmitter release at the neuromuscular junction was not affected in the conditional mice, homozygous deletion of the floxed allele caused an ablation of Ca(v)2.1 channel-mediated neurotransmission that was accompanied by a compensatory upregulation of Ca(v)2.3 (R-type) channels at this synapse. Pharmacological inhibition of Ca(v)2.1 channels is possible, but the contributing cell-types and time windows relevant to the different Ca(v)2.1-related neurological disorders can only be reliably determined using Cacna1a conditional mice.
Ca(v)2.1(P/Q型)电压门控钙通道在许多脑突触和神经肌肉接头处的神经递质释放中起着重要作用。编码Ca(v)2.1通道孔形成α(1)亚基的CACNA1A基因突变与多种神经系统疾病相关。在此,我们构建了具有条件性、可敲除的Cacna1a等位基因且无明显表型的小鼠。敲除可敲除的Cacna1a等位基因导致小鼠在第四周出现共济失调、肌张力障碍和死亡,这是一种与传统Ca(v)2.1基因敲除小鼠相似的严重表型。虽然条件性小鼠的神经肌肉接头处神经递质释放未受影响,但可敲除等位基因的纯合缺失导致Ca(v)2.1通道介导的神经传递消失,并伴有该突触处Ca(v)2.3(R型)通道的代偿性上调。对Ca(v)2.1通道进行药理学抑制是可行的,但只有使用Cacna1a条件性小鼠才能可靠地确定与不同Ca(v)2.1相关神经系统疾病相关的细胞类型和时间窗口。