Sawada Kazuhiko, Fukui Yoshihiro
Laboratory of Anatomy, Department of Physical Therapy, Faculty of Medical and Health Sciences, Tsukuba International University, Tsuchiura, Ibaraki, Japan.
ScientificWorldJournal. 2010 Oct 12;10:2032-8. doi: 10.1100/tsw.2010.205.
Rolling mouse Nagoya is an ataxic mutant mouse that carries a mutation in a gene encoding for the alpha 1A subunit of the voltage-gated P/Q-type Ca2+ channel (Cav2.1). This report summarizes our studies and others concerning cerebellar abnormalities in rolling mice based on chemical neuroanatomy. While there are no obvious cerebellar deformations in this mutant mouse, the altered functions of Purkinje cells can be revealed as a reduced expression of type 1 ryanodine receptor (RyR1) in all Purkinje cells uniformly throughout the cerebellum, and as an ectopic expression of tyrosine hydroxylase (TH) in the Purkinje cell subsets with the zebrin II-immunopositive phenotype. As the mutated Cav2.1 channel is expressed at uniform levels in all Purkinje cells, its copresence with RyR1 staining suggests that a Cav2.1 channel dysfunction links with the expression of RyR1 in Purkinje cells of rolling mice. However, an ectopic expression of TH in the Purkinje cells is topologically related to the projection of corticotrophin-releasing factor-immunopositive climbing fibers rather than expression of the mutated Cav2.1 channel. On the other hand, increased levels of serotonin (5-HT) in 5-HTergic fibers were revealed immunohistochemically in Purkinje cells of the vermis of rolling cerebellum. Thus, to determine whether or not cerebellar abnormalities are related to Purkinje cell populations revealed by zebrin II expression is essential for enhancing our understanding of the pathogenesis of hereditary cerebellar ataxic mutants such as rolling mice.
滚动小鼠名古屋品系是一种共济失调突变小鼠,其编码电压门控P/Q型Ca2+通道(Cav2.1)α1A亚基的基因发生了突变。本报告总结了我们以及其他研究人员基于化学神经解剖学对滚动小鼠小脑异常的研究。虽然该突变小鼠没有明显的小脑畸形,但浦肯野细胞功能的改变可表现为整个小脑所有浦肯野细胞中1型兰尼碱受体(RyR1)表达降低,以及在具有zebrin II免疫阳性表型的浦肯野细胞亚群中酪氨酸羟化酶(TH)的异位表达。由于突变的Cav2.1通道在所有浦肯野细胞中均以相同水平表达,其与RyR1染色同时存在表明Cav2.1通道功能障碍与滚动小鼠浦肯野细胞中RyR1的表达有关。然而,浦肯野细胞中TH的异位表达在拓扑学上与促肾上腺皮质激素释放因子免疫阳性攀缘纤维的投射有关,而不是与突变的Cav2.1通道的表达有关。另一方面,免疫组织化学显示滚动小脑蚓部浦肯野细胞中5-羟色胺能纤维中的5-羟色胺(5-HT)水平升高。因此,可以确定小脑异常是否与zebrin II表达所揭示的浦肯野细胞群体有关,这对于加深我们对遗传性小脑共济失调突变体(如滚动小鼠)发病机制的理解至关重要。