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Characterization of Common SMPD1 Mutations Causing Types A B Niemann-Pick Disease and Generation of Mutation-Specific Mouse Models

机译:导致A型和B型Niemann-Pick病的常见SMPD1突变的特征以及特定于突变的小鼠模型的产生

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摘要

Herein we describe detailed characterization of four common mutations (L302P, H421Y, R496L and ΔR608) within the acid sphingomyelinase (ASM) gene causing Types A and B Niemann-Pick disease (NPD). In vitro and in situ enzyme assays revealed marked deficiencies of ASM activity in NPD cell lines homoallelic for each mutation, although western blotting and fluorescent microscopy showed that the mutant ASM polypeptides were expressed at normal levels and trafficked to lysosomes. Co-immunoprecipitation of the polypeptides with the ER chaperone, BiP, confirmed these findings, as did in vitro expression of the mutant cDNAs in reticulocyte lysates. We further developed a computer assisted, three-dimensional model of human ASM based on homologies to known proteins, and used this model to map each NPD mutation in relation to putative substrate binding, hydrolysis and zinc binding domains. Lastly, we generated transgenic mice expressing the R496L and ΔR608 mutations on the complete ASM knock-out background (ASMKO), and established breeding colonies for the future evaluation of enzyme enhancement therapies. Analysis of these mice demonstrated that the mutant ASM transgenes were expressed at high levels in the brain, and in the case of the ΔR608 mutation, produced residual ASM activity that was significantly above the ASMKO background.
机译:在本文中,我们描述了导致A型和B型Niemann-Pick病(NPD)的酸性鞘磷脂酶(ASM)基因中四个常见突变(L302P,H421Y,R496L和ΔR608)的详细表征。体外和原位酶测定显示,对于每个突变,NPD细胞系同等位基因中ASM活性均明显不足,尽管蛋白质印迹和荧光显微镜检查显示突变的ASM多肽以正常水平表达并运输至溶酶体。多肽与ER伴侣BiP的共免疫沉淀证实了这些发现,正如突变cDNA在网织红细胞裂解物中的体外表达一样。我们进一步开发了计算机辅助的人ASM三维模型,该模型基于与已知蛋白质的同源性,并使用该模型绘制了与假定的底物结合,水解和锌结合域有关的每个NPD突变。最后,我们生成了在完整的ASM基因敲除背景(ASMKO)上表达R496L和ΔR608突变的转基因小鼠,并建立了繁殖菌落,以用于将来评估酶增强疗法。对这些小鼠的分析表明,突变的ASM转基因在脑中高水平表达,在ΔR608突变的情况下,产生的残留ASM活性明显高于ASMKO背景。

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