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首页> 外文期刊>The European Journal of Neuroscience >ATF3 expression precedes death of spinal motoneurons in amyotrophic lateral sclerosis-SOD1 transgenic mice and correlates with c-Jun phosphorylation, CHOP expression, somato-dendritic ubiquitination and Golgi fragmentation.
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ATF3 expression precedes death of spinal motoneurons in amyotrophic lateral sclerosis-SOD1 transgenic mice and correlates with c-Jun phosphorylation, CHOP expression, somato-dendritic ubiquitination and Golgi fragmentation.

机译:在肌萎缩性侧索硬化-SOD1转基因小鼠中,脊髓运动神经元死亡之前ATF3表达,并与c-Jun磷酸化,CHOP表达,体树突状泛素化和高尔基体碎裂相关。

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摘要

To obtain insight into the morphological and molecular correlates of motoneuron degeneration in amyotrophic lateral sclerosis (ALS) mice that express G93A mutant superoxide dismutase (SOD)1 (G93A mice), we have mapped and characterized 'sick' motoneurons labelled by the 'stress transcription factors' ATF3 and phospho-c-Jun. Immunocytochemistry and in situ hybridization showed that a subset of motoneurons express ATF3 from a relatively early phase of disease before the onset of active caspase 3 expression and motoneuron loss. The highest number of ATF3-expressing motoneurons occurred at symptom onset. The onset of ATF3 expression correlated with the appearance of ubiquitinated neurites. Confocal double-labelling immunofluorescence showed that all ATF3-positive motoneurons were immunoreactive for phosphorylated c-Jun. Furthermore, the majority of ATF3 and phospho-c-Jun-positive motoneurons were also immunoreactive for CHOP (GADD153) and showed Golgi fragmentation. A subset of ATF3 and phosphorylated c-Jun-immunoreactive motoneurons showed an abnormal appearance characterized by a number of distinctive features, including an eccentric flattened nucleus, perikaryal accumulation of ubiquitin immunoreactivity, juxta-nuclear accumulation of the Golgi apparatus and the endoplasmic reticulum, and intense Hsp70 immunoreactivity. These abnormal cells were not immunoreactive for active caspase 3. We conclude that motoneurons in ALS-SOD1 mice prior to their death and disappearance experience a prolonged sick phase, characterized by the gradual accumulation of ubiquitinated material first in the neurites and subsequently the cell body.
机译:为了深入了解表达G93A突变型超氧化物歧化酶(SOD)1的肌萎缩性侧索硬化(ALS)小鼠中运动神经元变性的形态学和分子相关性,我们绘制了图并用“应激转录”标记了“病态”运动神经元因子的ATF3和磷酸c-Jun。免疫细胞化学和原位杂交显示,运动神经元的子集在疾病中相对活跃的早期表达ATF3,而该酶在caspase 3活性表达和运动神经元丧失开始之前。出现ATF3的运动神经元数量最多。 ATF3表达的开始与泛素化神经突的出现有关。共聚焦双标记免疫荧光显示,所有ATF3阳性的运动神经元对磷酸化c-Jun均具有免疫反应性。此外,大多数ATF3和磷酸化c-Jun阳性运动神经元对CHOP(GADD153)也具有免疫反应性,并显示高尔基体碎裂。 ATF3和磷酸化的c-Jun免疫反应性运动神经元的子集表现出异常外观,其特征是具有许多独特的特征,包括偏心的扁平核,泛素免疫反应性的周核积累,高尔基体和内质网的近核积累和强烈的Hsp70免疫反应性。这些异常细胞对活性半胱天冬酶3没有免疫反应性。我们得出结论,ALS-SOD1小鼠中的运动神经元在死亡和消失之前会经历长期的疾病阶段,其特征是泛素化物质首先在神经突中逐渐积累,然后在细胞体内逐渐积累。

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