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Substantially elevating the levels of αB-crystallin in spinal motor neurons of mutant SOD1 mice does not significantly delay paralysis or attenuate mutant protein aggregation

机译:大幅提高突变型SOD1小鼠脊髓运动神经元中αB-晶状体蛋白的水平不会明显延迟麻痹或减弱突变型蛋白的聚集

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摘要

There has been great interest in enhancing endogenous protein maintenance pathways such as the heat-shock chaperone response, as it is postulated that enhancing clearance of misfolded proteins could have beneficial disease modifying effects in ALS and other neurodegenerative disorders. In cultured cell models of mutant SOD1 aggregation, co-expression of αB-crystallin (αB-crys) has been shown to inhibit the formation of detergent-insoluble forms of mutant protein. Here, we describe the generation of a new line of transgenic mice that express αB-crys at >6-fold the normal level in spinal cord, with robust increases in immunoreactivity throughout the spinal cord grey matter and, specifically, in spinal motor neurons. Surprisingly, spinal cords of mice expressing αB-crys alone contained 20% more motor neurons per section than littermate controls. Raising αB-crys by these levels in mice transgenic for either G93A or L126Z mutant SOD1 had no effect on the age at which paralysis developed. In the G93A mice, which showed the most robust degree of motor neuron loss, the number of these cells declined by the same proportion as in mice expressing the mutant SOD1 alone. In paralyzed bigenic mice, the levels of detergent-insoluble, misfolded, mutant SOD1 were similar to those of mice expressing mutant SOD1 alone. These findings indicate that raising the levels of αB-crys in spinal motor neurons by 6-fold does not produce the therapeutic effects predicted by cell culture models of mutant SOD1 aggregation.
机译:人们对增强内源性蛋白质维持途径(如热休克蛋白伴侣反应)产生了极大的兴趣,因为据推测,增强错折叠蛋白质的清除可在ALS和其他神经退行性疾病中具有有益的疾病改良作用。在突变的SOD1聚集的培养细胞模型中,αB-晶状蛋白(αB-crys)的共表达已显示出抑制去污剂不溶形式的突变蛋白的形成。在这里,我们描述了新的转基因小鼠品系的产生,它们在脊髓中的正常水平表达> 6倍时表达αB-crys,在整个脊髓灰质中,特别是在脊髓运动神经元中,免疫反应性均呈强劲增长。令人惊讶的是,每只表达αB-crys的小鼠的脊髓每节比同窝对照多包含20%的运动神经元。通过这些水平的转基因小鼠(针对G93A或L126Z突变型SOD1)提高αB啼声对麻痹发生的年龄没有影响。在表现出最强健的运动神经元丧失程度的G93A小鼠中,这些细胞的数量下降的比例与仅表达突变型SOD1的小鼠的比例相同。在瘫痪的双基因小鼠中,去污剂不溶,折叠错误的突变型SOD1的水平类似于仅表达突变型SOD1的小鼠的水平。这些发现表明,将脊髓运动神经元中的αB-crys水平提高6倍不会产生突变SOD1聚集的细胞培养模型所预测的治疗效果。

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