Kumode M, Yamano T, Shimada M
Department of Pediatrics, Shiga University of Medical Science, Japan.
Acta Neuropathol. 1993;86(5):411-7. doi: 10.1007/BF00228573.
The hemizygote of the macular mutant mouse is clinically, biochemically and neuropathologically similar to a patient with Menkes kinky hair disease. The heterozygote of this mutant mouse was biochemically and neuropathologically examined. The copper content in the brain decreased in comparison with that in the normal littermate, although it was more than that in the hemizygote. In the Golgi study, abnormal Purkinje cells with somal sprouts, thick stem dendrites and dendritic focal swellings, which were seen in the hemizygote, were not observed in the heterozygote. Ultrastructurally, abnormal mitochondria were seen in the Purkinje cells in the anterior and middle cerebellar lobe of the heterozygote. Histochemically, cytochrome c oxidase activity decreased, especially at the anterior lobe in the cerebellar cortex of the heterozygote. This activity, as indicated by staining intensity, was in between that in the normal littermate and that in the hemizygote. The heterozygote did not show a mosaic pattern in the distribution of these neuropathological changes, although this mutant mouse shows x-linked recessive inheritance. Thus, our results lead to the conclusion that the neuropathological changes observed in this mutant mouse do not result directly from an abnormal gene in the Purkinje cell, but from the secondary effects of subsequent to presumptive copper deficiency.
黄斑突变小鼠的半合子在临床、生化和神经病理学方面与患有门克斯卷发疾病的患者相似。对该突变小鼠的杂合子进行了生化和神经病理学检查。与正常同窝小鼠相比,其大脑中的铜含量降低,尽管高于半合子中的铜含量。在高尔基染色研究中,杂合子中未观察到半合子中出现的具有体细胞芽、粗大茎状树突和树突局灶性肿胀的异常浦肯野细胞。在超微结构上,杂合子小脑前叶和中叶的浦肯野细胞中可见异常线粒体。组织化学研究表明,细胞色素c氧化酶活性降低,尤其是在杂合子小脑皮质的前叶。从染色强度来看,这种活性介于正常同窝小鼠和半合子之间。尽管这种突变小鼠表现为X连锁隐性遗传,但杂合子在这些神经病理学变化的分布上并未显示出镶嵌模式。因此,我们的结果得出结论,在这种突变小鼠中观察到的神经病理学变化并非直接由浦肯野细胞中的异常基因引起,而是由推测的铜缺乏继发的次级效应所致。