Wischik C M, Crowther R A, Stewart M, Roth M
J Cell Biol. 1985 Jun;100(6):1905-12. doi: 10.1083/jcb.100.6.1905.
The neurofibrillary tangles that occur in the brain in cases of senile dementia of the Alzheimer type contain a distinctive type of filament, the paired helical filament (PHF). We have developed a method for isolating the tangles postmortem in sufficient yield for structural study of PHFs by electron microscopy of negatively stained and shadowed preparations. This material shows the characteristic helical structure seen in sectioned embedded material. In addition, two striking fragmentation patterns are observed. (a) Some filaments show sharp transverse breaks at apparently random positions along the filament. (b) In a few PHFs one strand is missing for a variable length, whereas the other appears to maintain its structural integrity. The shadowed specimens show the PHF to be wound in a left-handed manner. These observations indicate that the PHF consists of subunits of very limited axial extent arranged along two left-handed helical strands. The visualization of the substructure within the PHFs is rather variable and a model building approach has therefore been adopted, which has allowed the main features seen in the images to be interpreted. The subunit appears to have at least two domains in a radial direction and an axial extent of less than 5 nm. The whole structure can best be described as a twisted ribbon and indeed alkali treatment does untwist PHFs to give flat ribbons. The nature of the proposed model makes it most unlikely that the PHF is formed by a simple collapse of normal cytoskeletal elements, such as neurofilaments.
在阿尔茨海默型老年痴呆症患者大脑中出现的神经原纤维缠结包含一种独特类型的细丝,即双螺旋细丝(PHF)。我们已开发出一种方法,可在尸检后以足够的产量分离出缠结,以便通过对负染色和投影制备物进行电子显微镜观察来对PHF进行结构研究。这种材料呈现出在包埋切片材料中所见的特征性螺旋结构。此外,还观察到两种显著的断裂模式。(a)一些细丝在沿着细丝的明显随机位置处出现尖锐的横向断裂。(b)在少数PHF中,一股细丝在可变长度范围内缺失,而另一股似乎保持其结构完整性。投影标本显示PHF以左手方式缠绕。这些观察结果表明,PHF由沿两条左手螺旋链排列的轴向范围非常有限的亚基组成。PHF内亚结构的可视化情况变化较大,因此采用了模型构建方法,这使得能够解释图像中看到的主要特征。亚基在径向方向上似乎至少有两个结构域,轴向范围小于5纳米。整个结构最恰当地可描述为扭曲的带状物,实际上碱处理确实会使PHF解开扭曲形成扁平带状物。所提出模型的性质使得PHF极不可能由正常细胞骨架成分(如神经丝)的简单塌陷形成。