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首页> 外文期刊>Human Molecular Genetics >PQBP-1 transgenic mice show a late-onset motor neuron disease-like phenotype.
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PQBP-1 transgenic mice show a late-onset motor neuron disease-like phenotype.

机译:PQBP-1转基因小鼠显示迟发性运动神经元疾病样表型。

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摘要

A body of experimental evidence indicates that transcription and/or mRNA processing factors interacting with the polyglutamine disease gene products play crucial roles in the pathology. PQBP-1 is one of these factors and it has been shown to interact with the spinocerebellar ataxia type-1 (SCA1) disease gene product, ataxin-1. Our previous data suggested that relatively high expression of PQBP-1 in the cerebellum might explain the selective neuronal degeneration of SCA1. To further test whether PQBP-1 expression level regulates neuronal death, we generated transgenic mice of human PQBP-1 driven by a regulatory element for ubiquitous gene expression. The mice showed a late-onset and gradually progressive motor neuron disease-like phenotype, which might be related to neurogenic muscular atrophy observed in SCA1 patients. Ataxia could not be discriminated from predominant progressive weakness. Pathological examinations of the transgenic mice revealed loss of Purkinje and granular cells in the cerebellum as well as that of spinal motor neurons, corresponding to the pathology of human SCA1. These findings show that excessive action of PQBP-1 causes neuronal dysfunction and support PQBP-1 being involved in the pathology of SCA1.
机译:大量实验证据表明,与多谷氨酰胺疾病基因产物相互作用的转录和/或mRNA加工因子在病理中起关键作用。 PQBP-1是这些因素之一,并且已显示与脊髓小脑性共济失调1型(SCA1)疾病基因产物紫杉素1相互作用。我们以前的数据表明,小脑中PQBP-1的相对高表达可能解释了SCA1的选择性神经元变性。为了进一步测试PQBP-1的表达水平是否调节神经元的死亡,我们生成了人类PQBP-1的转基因小鼠,该小鼠由无处不在的基因表达的调控元件驱动。小鼠表现出迟发性和逐渐进行性运动神经元疾病样表型,这可能与在SCA1患者中观察到的神经源性肌肉萎缩有关。共济失调不能区别于主要的进行性肌无力。对转基因小鼠的病理学检查显示,小脑的Purkinje和颗粒细胞以及脊髓运动神经元的细胞丢失,这与人SCA1的病理情况相对应。这些发现表明,PQBP-1的过度作用会导致神经元功能障碍,并支持PQBP-1参与SCA1的病理。

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