Center of Research and Advanced Studies, Department of Cell Biology, National Polytechnic Institute, Av. Instituto Politecnico Nacional 2508, Mexico City, Mexico.
J Alzheimers Dis. 2013;36(3):503-20. doi: 10.3233/JAD-122401.
Abnormal intracellular aggregation of tau protein is a pathological condition leading to neuronal death in Alzheimer's disease. Fibrillar and nonfibrillar aggregates of tau protein alter the normal functioning of neurons by disturbing important cellular processes and distinct membranous organelles. However, tau-caused alterations in the nuclear compartment are not totally established so far. In our study we evaluated whether tau protein and its Asp421-truncated variant produce alterations in the normal architecture of the nucleus when expressed in cultured neuroblastoma cells. After 48 hours of transfection, significant deformity of the nuclear compartment with extensive lobulations along the nuclear envelope was observed in SH-SY5Y cells expressing either full-length tau or Asp421-truncated tau. This aberrant formation did not involve either nuclear fragmentation or cell death. The lobulated nuclei were devoid of tau protein, which mostly remained in the cytoplasm in a nonfibrillar state. Degradation of nuclear Lamins was not observed in tau-expressing SH-SY5Y cells, and a cell-cycle analysis did not show aberrant chromosome accumulation. Thus multiple division defects leading to multinucleation were discarded. The lobulated nuclei in tau-expressing SH-SY5Y cells seem to more resemble the multilobular phenotype of the nuclear envelope seen in Lamin-mutated cells from those pathological conditions leading to premature aging. Nevertheless, in our tau-expressing cells, the abnormal formation of cortical and perinuclear rings of tubulin generated by tau binding may be a more feasible mechanism of a nuclear-cytoskeleton generating force that causes the nuclear deformation.
异常的 Tau 蛋白细胞内聚集是导致阿尔茨海默病神经元死亡的病理状态。Tau 蛋白的纤维状和非纤维状聚集物通过干扰重要的细胞过程和不同的膜细胞器改变神经元的正常功能。然而,到目前为止,Tau 引起的核区改变还没有完全确定。在我们的研究中,我们评估了 Tau 蛋白及其截断变体 Asp421 是否在培养的神经母细胞瘤细胞中表达时会导致核正常结构发生改变。转染 48 小时后,在表达全长 Tau 或 Asp421 截断 Tau 的 SH-SY5Y 细胞中,观察到核区明显变形,核膜沿核周广泛出现叶状突起。这种异常形成不涉及核碎裂或细胞死亡。叶状核缺乏 Tau 蛋白,其大部分以非纤维状状态留在细胞质中。在表达 Tau 的 SH-SY5Y 细胞中未观察到核层粘连蛋白降解,细胞周期分析也未显示异常染色体积累。因此,导致多核化的多个分裂缺陷被排除。表达 Tau 的 SH-SY5Y 细胞中的叶状核似乎更类似于导致早衰的那些病理条件下 Lamin 突变细胞中所见的核膜多叶表型。然而,在我们表达 Tau 的细胞中,Tau 结合产生的皮质和核周微管的异常环的形成可能是核-细胞骨架产生力导致核变形的更可行机制。