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首页> 外文期刊>Human Molecular Genetics >Disruption of the nuclear membrane by perinuclear inclusions of mutant huntingtin causes cell-cycle re-entry and striatal cell death in mouse and cell models of Huntington's disease
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Disruption of the nuclear membrane by perinuclear inclusions of mutant huntingtin causes cell-cycle re-entry and striatal cell death in mouse and cell models of Huntington's disease

机译:突变型亨廷顿蛋白的核周包裹体破坏核膜会导致小鼠和亨廷顿氏病细胞模型的细胞周期再进入和纹状体细胞死亡

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摘要

Accumulation of N-terminal fragments of mutant huntingtin (mHTT) in the cytoplasm, nuclei and axons of neurons is a hallmark of Huntington's disease (HD), although how these fragments negatively impact neurons remains unclear. We followed the distribution of mHTT in the striata of transgenic R6/2-J2 HD mice as their motor function declined. The fraction of cells with diffuse, perinuclear or intranuclear mHTT changed in parallel with decreasing motor function. In transgenic mice, medium spiny neurons (MSNs) that exhibited perinuclear inclusions expressed cell-cycle markers typically not seen in the striata of normal mice, and these cells are preferentially lost as disease progresses. Electron microscopy reveals that perinuclear inclusions disrupt the nuclear envelope. The progression of perinuclear inclusions being accompanied by cell-cycle activation and culminating in cell death was also observed in 1 degrees cortical neurons. These observations provide a strong correlation between the subcellular location of mHTT, disruption of the nucleus, re-entry into the cell-cycle and eventual neuronal death. They also highlight the fact that the subcellular distribution of mHTT is highly dynamic such that the distribution of mHTT observed depends greatly on the stage of the disease being examined.
机译:亨廷顿氏病(HD)的标志是突变亨廷顿蛋白(mHTT)N末端片段在神经元的细胞质,核和轴突中积累,尽管这些片段如何对神经元产生负面影响尚不清楚。我们追踪了mHTT在转基因R6 / 2-J2 HD小鼠的纹状体中的分布,因为它们的运动功能下降了。具有弥散,核周或核内mHTT的细胞比例与运动功能下降并行变化。在转基因小鼠中,表现出核周内含物的中棘神经元(MSN)表达了通常在正常小鼠的纹状体中未见的细胞周期标记,并且随着疾病的进展,这些细胞优先丢失。电子显微镜显示核周包裹体破坏了核膜。在1度皮质神经元中也观察到了核周包裹体的进展,伴随着细胞周期的活化并最终导致细胞死亡。这些观察结果在mHTT的亚细胞位置,细胞核破裂,重新进入细胞周期与最终神经元死亡之间提供了很强的相关性。他们还强调了一个事实,即mHTT的亚细胞分布是高度动态的,因此观察到的mHTT的分布在很大程度上取决于所检查疾病的阶段。

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