DeArmond S J, Qiu Y, Sànchez H, Spilman P R, Ninchak-Casey A, Alonso D, Daggett V
Department of Pathology, University of California, San Francisco 94143-0506, USA.
J Neuropathol Exp Neurol. 1999 Sep;58(9):1000-9. doi: 10.1097/00005072-199909000-00010.
We recently found that deletion of the Asn-linked carbohydrate (CHO) at residue 197 of Syrian hamster (SHa) PrP(C) while retaining the CHO at Asn 181 has a profound effect on which population of neurons are targeted for conversion of SHaPrP(C) to SHaPrP(Sc) in transgenic (Tg) mice inoculated with scrapie prions. We hypothesized that selective targeting of neuronal populations is determined by cell-specific differences in the affinity of an infecting PrP(Sc) (prion) for PrP(C) and that the affinity might be modulated by nerve cell-specific differences in PrP(C) glycosylation. Here we tested this hypothesis by assessing whether or not each brain region in Syrian hamsters synthesizes different PrP(C) glycoforms, as inferred from 2D-gel electrophoresis. Reproducible differences in the number and isoelectric point of PrP(C) charge isomers were found as a function of brain region. The results of this study support the hypothesis that the PrP(Sc) accumulation and the vacuolation pattern phenotypes in the brain are governed by neuron-specific differences in PrP(C) glycoforms.
我们最近发现,叙利亚仓鼠(SHa)PrP(C)第197位残基上的N-连接碳水化合物(CHO)缺失,而Asn 181处的CHO保留,对接种羊瘙痒病朊病毒的转基因(Tg)小鼠中SHaPrP(C)转化为SHaPrP(Sc)所靶向的神经元群体有深远影响。我们假设,神经元群体的选择性靶向是由感染性PrP(Sc)(朊病毒)对PrP(C)亲和力的细胞特异性差异决定的,并且这种亲和力可能受PrP(C)糖基化的神经细胞特异性差异调节。在这里,我们通过评估叙利亚仓鼠的每个脑区是否合成不同的PrP(C)糖型(从二维凝胶电泳推断)来检验这一假设。发现PrP(C)电荷异构体的数量和等电点存在可重复的差异,这是脑区的函数。本研究结果支持以下假设:脑中PrP(Sc)积累和空泡化模式表型受PrP(C)糖型的神经元特异性差异支配。