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首页> 外文期刊>Human Molecular Genetics >Creation of a mouse model for non-neurological (type B) Niemann-Pick disease by stable, low level expression of lysosomal sphingomyelinase in the absence of secretory sphingomyelinase: relationship between brain intra-lysosomal enzyme activity and ce
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Creation of a mouse model for non-neurological (type B) Niemann-Pick disease by stable, low level expression of lysosomal sphingomyelinase in the absence of secretory sphingomyelinase: relationship between brain intra-lysosomal enzyme activity and ce

机译:在缺乏分泌型鞘磷脂酶的情况下,通过稳定,低水平表达溶酶体鞘磷脂酶来创建非神经性(B型)Niemann-Pick疾病的小鼠模型:脑内溶酶体酶活性与ce之间的关系

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摘要

Most lysosomal storage diseases result in neurodegeneration, but deficiencies in the same enzymes can also lead to syndromes without neurologic manifestations. The hypothesis that low levels of residual, intra-lysosomal enzymatic activities in the central nervous system (CNS) are protective has been difficult to prove because of inconsistencies in assays of tissue samples. Experimental correction of lysosomal enzyme deficiencies in animal models suggests that low-level enzymatic activity may reduce CNS pathology, but these results are difficult to interpret owing to the partial and transient nature of the improvements, the presence of secretory hydrolases, and other confounding factors. Using a novel transgenic/knockout strategy to manipulate the intracellular targeting of a hydrolase, we created a mouse that stably expresses low levels of lysosomal sphingomyelinase (L-SMase) in the complete absence of secretory sphingomyelinase (S-SMase). The brains of these mice exhibited 11.5-18.2% of wild-type L-SMase activity, but the cerebellar Purkinje cell layer, which is lost by 4 months of age in mice completely lacking L- and S-SMase, was preserved for at least 8 months. The L-SMase activities in other organs were 1-14% of wild-type levels, and by 8 months of age all peripheral organs had accumulated sphingomyelin and demonstrated pathological intracellular inclusions. Most importantly, L-SMase-expressing mice showed no signs of the severe neurologic disease observed in completely deficient mice, and their life span and general health were essentially normal. These findings show that stable, continuous, low-level expression of intra-lysosomal enzyme activity in the brain can preserve CNS function in the absence of secretory enzyme or other confounding factors.
机译:大多数溶酶体贮积病会导致神经退行性变,但是同一酶的缺乏也会导致无神经系统症状的综合症。由于组织样品测定的不一致,很难证明中枢神经系统(CNS)中残留的溶酶体内酶活水平低是保护性的。动物模型中溶酶体酶缺乏症的实验校正表明,低水平的酶活性可能会减少中枢神经系统病理,但由于这种改善的部分和短暂性质,分泌性水解酶的存在以及其他混杂因素,这些结果难以解释。使用新颖的转基因/基因敲除策略来操纵水解酶的细胞内靶向,我们创建了在完全没有分泌型鞘磷脂酶(S-SMase)的情况下稳定表达低水平溶酶体鞘磷脂酶(L-SMase)的小鼠。这些小鼠的大脑表现出11.5-18.2%的野生型L-SMase活性,但在完全缺乏L-和S-SMase的小鼠中,小脑Purkinje细胞层在4个月大时就消失了,可以保留至少8个月。其他器官中的L-SMase活性为野生型水平的1-14%,并且到8个月大时,所有外围器官都积累了鞘磷脂,并显示出病理性细胞内包涵体。最重要的是,表达L-SMase的小鼠在完全缺乏的小鼠中未观察到严重的神经系统疾病迹象,它们的寿命和总体健康状况基本正常。这些发现表明,在不存在分泌酶或其他混杂因素的情况下,脑中溶酶体内酶活性的稳定,连续,低水平表达可以保留CNS功能。

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