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Correction of a mouse model of Menkes disease by the human Menkes gene

机译:通过人类Menkes基因校正Menkes疾病的小鼠模型

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摘要

The brindled mouse is an accurate model of the fatal human X-linked copper deficiency disorder, Menkes disease. Males carrying the mutant allele of the Menkes gene orthologue Atp7a die in the second week of life. To determine whether the genetic defect in the brindled mice could be corrected by expression of the human Menkes gene, male transgenic mice expressing ATP7A from the chicken β-actin composite promoter (CAG) were mated with female carriers of the brindled mutation (Atp7aMo-br). Mutant males carrying the transgene survived and were fertile but the copper defect was not completely corrected. Unexpectedly males corrected with one transgenic line (T25#5) were mottled and resembled carrier females, this effect appeared to be caused by mosaic expression of the transgene. In contrast, males corrected with another line (T22#2) had agouti coats. Copper concentrations in tissues of the rescued mutants also resembled those of the heterozygous females, with high levels in kidney (84.6 ± 4.9 μg/g in corrected males vs. 137.0 ± 44.3 μg/g in heterozygotes) and small intestine (15.6 ± 2.5 μg/g in corrected males vs. 15.7 ± 2.8 μg/g in heterozygotes). The results show that the Menkes defect in mice is corrected by the human Menkes gene and that adequate correction is obtained even when the transgene expression does not match that of the endogenous gene.
机译:斑驳的老鼠是致命的人类X连锁铜缺乏症Menkes疾病的精确模型。携带Menkes基因直向同源基因Atp7a突变等位基因的男性在生命的第二周死亡。为了确定有斑小鼠的遗传缺陷是否可以通过人类Menkes基因的表达来纠正,将来自鸡β-肌动蛋白复合启动子(CAG)的表达ATP7A的雄性转基因小鼠与有斑突变的雌性载体(Atp7aMo-br )。携带转基因的突变雄性得以幸存,能够繁殖,但铜缺陷并未得到完全矫正。出乎意料的是,用一种转基因品系(T25#5)校正过的雄性呈斑驳状,类似于携带者雌性,这种作用似乎是由转基因的镶嵌表达引起的。相反,用另一种线(T22#2)矫正的雄性具有刺豚鼠大衣。拯救的突变体组织中的铜浓度也与杂合子雌性相似,肾脏中的铜含量较高(校正后的雄性为84.6±4.9μg/ g,杂合子为137.0±44.3μg/ g)和小肠(15.6±2.5μg) / g(校正后的雄性),而杂合子为15.7±2.8μg/ g)。结果表明,人的Menkes基因可纠正小鼠的Menkes缺陷,即使转基因表达与内源基因的表达不匹配,也可获得足够的纠正。

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