首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Mutation frequency is reduced in the cerebellum of Big Blue mice overexpressing a human wild type SOD1 gene.
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Mutation frequency is reduced in the cerebellum of Big Blue mice overexpressing a human wild type SOD1 gene.

机译:在过度表达人类野生型SOD1基因的蓝色巨人小鼠小脑中,突变频率降低。

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摘要

Amyotrophic lateral sclerosis (ALS) is a progressive paralytic disorder caused by motor neuron degeneration. A similar disease phenotype is observed in mice overexpressing a mutant human hSOD1 gene (G93A, 1Gurd(1)). Mice transgenic for lacI (Big Blue) and human mutant (1Gurd(1), Mut hSOD1) or wild type (2Gur, Wt hSOD1) SOD1 genes were used to examine spontaneous mutation, oxidative DNA damage, and neurodegeneration in vivo. The frequency and pattern of spontaneous mutation were determined for forebrain (90% glia), cerebellum (90% neurons) and thymus from 5-month-old male mice. Mutation frequency is not elevated significantly and mutation pattern is unaltered in Mut hSOD1 mice compared to control mice. Mutation frequency is reduced significantly in the cerebellum of Wt hSOD1 mice (1.6x10(-5); P=0.0093; Fisher's Exact Test) compared to mice without a human transgene (2.7x10(-5)). Mutation pattern is unaltered. This first report of an endogenous factor that can reduce in vivo, the frequency of spontaneous mutation suggests potential strategies for lowering mutagenesis related to aging, neurodegeneration, and carcinogenesis.
机译:肌萎缩性侧索硬化症(ALS)是由运动神经元变性引起的进行性麻痹性疾病。在过表达突变型人hSOD1基因(G93A,1Gurd(1))的小鼠中观察到类似的疾病表型。使用lacI(蓝色)和人类突变体(1Gurd(1),Mut hSOD1)或野生型(2Gur,Wt hSOD1)SOD1基因转基因的小鼠,检查体内的自发突变,氧化性DNA损伤和神经变性。确定了来自5个月大的雄性小鼠的前脑(90%胶质细胞),小脑(90%神经元)和胸腺的自发突变的频率和模式。与对照小鼠相比,Mut hSOD1小鼠的突变频率没有显着升高,突变模式没有改变。与没有人转基因小鼠(2.7x10(-5))相比,Wt hSOD1小鼠小脑的突变频率显着降低(1.6x10(-5); P = 0.0093; Fisher精确检验)。变异模式不变。关于可在体内减少的内源性因子的首次报道,自发突变的频率提示了降低与衰老,神经退行性变和癌变有关的诱变的潜在策略。

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