表达突变体(P301L)人tau基因转基因小鼠的超微结构神经病理学。

Wen-Lang Lin, Jada Lewis, Shu-Hui Yen, Michael Hutton, Dennis W Dickson
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引用次数: 127

摘要

表达突变体(P301L)人tau基因的转基因小鼠出现神经原纤维缠结、肌萎缩和进行性运动障碍。我们在这个模型中展示了神经元变性的超微结构特征,表明神经变性涉及神经原纤维和自噬过程。经历神经原纤维变性的神经元含有tau免疫反应,15-20纳米宽的直或波浪状细丝,没有周期性的扭曲。在两种受影响的神经元中发现了Tau纤维。一种类型类似于具有神经原纤维缠结(NFT)的神经元,其中充满了大量的细丝,将稀疏的细胞器转移到周围。微管几乎完全缺失。核仍位于中央,但由于深包裹而呈小叶状。另一种类型类似于在一些人类牛头病变中看到的球状神经元。核位于周围,但外观正常。胞质细胞器分布于肿胀的核周,高尔基复合体破碎复制,线粒体等细胞器正常。与NFT相似的Tau纤维稀疏且排列不紧密。微管也很稀疏。这些细胞中存在许多自噬液泡。在灰质和白质中出现类似球体的异质轴突肿胀。与正常的轴突不同,轴突球体除了正常的神经丝和微管外,还充满了tau免疫反应丝和自噬空泡。这些P301L转基因小鼠表现出许多与人类牛头病变共同的特征,使它们成为研究这些罕见疾病发病机制的有价值的模型。
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Ultrastructural neuronal pathology in transgenic mice expressing mutant (P301L) human tau.

Transgenic mice expressing mutant (P301L) human tau develop neurofibrillary tangles, amyotrophy and progressive motor disturbance. We present ultrastructural features of neuronal degeneration in this model that suggests involvement of both neurofibrillary and autophagic processes in neurodegeneration. Neurons undergoing neurofibrillary degeneration contain tau-immunoreactive, 15-20 nm-wide straight or wavy filaments with no periodic twists. Tau filaments were found in two types of affected neurons. One type resembled neurons with neurofibrillary tangles (NFT) that were filled with numerous filaments that displaced sparse cytoplasmic organelles to the periphery. Microtubules were almost completely absent. The nucleus remained centrally located, but showed lobulations due to deep infoldings. The other type resembled ballooned neurons seen in some human tauopathies. The nucleus was peripherally placed, but normal appearing. The cytoplasmic organelles were dispersed throughout the swollen perikarya, the Golgi complex was fragmented and duplicated, while mitochondria and other organelles appeared normal. Tau filaments similar to those in NFT were sparse and not tightly packed. Microtubules were also sparse. Many autophagic vacuoles were present in these cells. Heterogeneous appearing axonal swellings resembling spheroids in human tauopathies were present in gray and white matter. Unlike normal appearing axons, axonal spheroids were filled with tau-immunoreactive filaments and autophagic vacuoles, in addition to normal appearing neurofilaments and microtubules. These P301L transgenic mice exhibit many features common to human tauopathies, making them a valuable model to study the pathogenesis of these uncommon disorders.

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