Einum David D, Clark Anna M, Townsend Jeannette J, Ptacek Louis J, Fu Ying-Hui
Department of Human Genetics, University of Utah, Salt Lake City, USA.
Arch Neurol. 2003 Jan;60(1):97-103. doi: 10.1001/archneur.60.1.97.
Polyglutamine-mediated neurodegeneration in spinocerebellar ataxia type 7 (SCA7) involves specific central nervous system structures despite widespread expression of the mutant ataxin-7 protein.
To determine whether expression of multiple gene products could contribute to selective neurodegeneration in SCA7.
We identified a novel SCA7 transcript and protein, both of which are enriched within the central nervous system. An isoform-specific antibody revealed that the novel ataxin-7 variant, in contrast with the previously described protein, localizes to neuronal cytoplasm and not to inclusion bodies present within the tissues of patients with SCA7.
In addition to expanding our understanding of SCA7 gene expression, identification of a novel ataxin-7 protein enriched in the central nervous system suggests that expression of multiple polyglutamine-containing proteins may play a role in generating the neurodegenerative patterns characteristic of SCA7 and other polyglutamine expansion diseases.
尽管突变型共济失调蛋白7广泛表达,但脊髓小脑共济失调7型(SCA7)中多聚谷氨酰胺介导的神经退行性变涉及特定的中枢神经系统结构。
确定多种基因产物的表达是否会导致SCA7中的选择性神经退行性变。
我们鉴定出一种新的SCA7转录本和蛋白质,二者在中枢神经系统中均有富集。一种亚型特异性抗体显示,与先前描述的蛋白质不同,新的共济失调蛋白7变体定位于神经元细胞质,而非SCA7患者组织中存在的包涵体。
除了加深我们对SCA7基因表达的理解外,鉴定出一种在中枢神经系统中富集的新的共济失调蛋白7表明,多种含多聚谷氨酰胺的蛋白质的表达可能在产生SCA7和其他多聚谷氨酰胺扩增疾病的神经退行性模式中发挥作用。