Tracz E, Dickson D W, Hainfeld J F, Ksiezak-Reding H
Department of Pathology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Brain Res. 1997 Oct 31;773(1-2):33-44. doi: 10.1016/s0006-8993(97)00830-5.
Paired helical filaments (PHF) composed of hyperphosphorylated tau proteins are characteristic findings in neurodegenerative disorders, including Alzheimer's disease (AD) and corticobasal degeneration (CBD). The filaments in CBD differ from those in AD by a reduced number of tau isoforms and less stable ultrastructure. To further compare the ultrastructure of both filaments, we employed a novel staining reagent, NanoVan, as well as aurothioglucose and uranyl acetate. With commonly used uranyl acetate, both kinds of filaments appeared as twisted ribbons 15-20-nm and 21-23-nm wide, respectively, without significant internal substructure. With application of aurothioglucose, only few structural details were apparent. With NanoVan, AD filaments showed similar structure to that with uranyl acetate but CBD filaments displayed a highly heterogeneous appearance consistent with the dissociation of the 20-25-nm-wide filaments along two longitudinal axes. This was evident by the presence of thinner, 12-13-nm-wide filaments and filaments that splayed into two 20-25-nm-wide components at one or both ends. Moreover, detection of a prominent, 7-8-nm-wide axial region distinguished up to four protofilaments per one filament. Each protofilament appeared to contain two 3-5-nm-wide fibrils separated by an approximately 1-nm-wide axial region. The results suggest that 3-5-nm fibrils are the smallest structural subunits of filaments in CBD and that NanoVan may be an unique reagent in detecting eight-fibril organization in these less stable filaments.
由过度磷酸化的tau蛋白组成的双螺旋丝(PHF)是神经退行性疾病的特征性表现,包括阿尔茨海默病(AD)和皮质基底节变性(CBD)。CBD中的丝与AD中的丝不同,tau异构体数量减少,超微结构稳定性较差。为了进一步比较两种丝的超微结构,我们使用了一种新型染色试剂NanoVan,以及金硫葡萄糖和醋酸铀。使用常用的醋酸铀时,两种丝均呈现为宽度分别为15 - 20纳米和21 - 23纳米的扭曲带,内部无明显亚结构。使用金硫葡萄糖时,仅能看到少数结构细节。使用NanoVan时,AD丝呈现出与醋酸铀染色时相似的结构,但CBD丝呈现出高度异质性外观,这与宽度为20 - 25纳米的丝沿两个纵轴解离一致。这表现为存在更细的、宽度为12 - 13纳米的丝,以及在一端或两端展开为两个宽度为20 - 25纳米组分的丝。此外,检测到一个突出的、宽度为7 - 8纳米的轴向区域,每条丝最多可区分出四条原纤维。每条原纤维似乎包含两条宽度为3 - 5纳米的原纤维,中间由一个宽度约为1纳米的轴向区域隔开。结果表明,3 - 5纳米的原纤维是CBD中丝的最小结构亚基,并且NanoVan可能是检测这些稳定性较差的丝中八原纤维组织的独特试剂。