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Divergent Phenotypes in Mutant TDP-43 Transgenic Mice Highlight Potential Confounds in TDP-43 Transgenic Modeling

机译:突变的TDP-43转基因小鼠中的不同表型突出了TDP-43转基因建模中的潜在混淆。

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摘要

The majority of cases of frontotemporal lobar degeneration and amyotrophic lateral sclerosis are pathologically defined by the cleavage, cytoplasmic redistribution and aggregation of TAR DNA binding protein of 43 kDa (TDP-43). To examine the contribution of these potentially toxic mechanisms in vivo, we generated transgenic mice expressing human TDP-43 containing the familial amyotrophic lateral sclerosis-linked M337V mutation and identified two lines that developed neurological phenotypes of differing severity and progression. The first developed a rapid cortical neurodegenerative phenotype in the early postnatal period, characterized by fragmentation of TDP-43 and loss of endogenous murine Tdp-43, but entirely lacking aggregates of ubiquitin or TDP-43. A second, low expressing line was aged to 25 months without a severe neurodegenerative phenotype, despite a 30% loss of mouse Tdp-43 and accumulation of lower molecular weight TDP-43 species. Furthermore, TDP-43 fragments generated during neurodegeneration were not C-terminal, but rather were derived from a central portion of human TDP-43. Thus we find that aggregation is not required for cell loss, loss of murine Tdp-43 is not necessarily sufficient in order to develop a severe neurodegenerative phenotype and lower molecular weight TDP-43 positive species in mouse models should not be inherently assumed to be representative of human disease. Our findings are significant for the interpretation of other transgenic studies of TDP-43 proteinopathy.
机译:在病理上,额叶颞叶变性和肌萎缩性侧索硬化的大多数情况是由TAR DNA结合蛋白43 kDa(TDP-43)的裂解,胞质再分布和聚集所致。为了检查这些潜在的毒性机制在体内的作用,我们生成了表达人TDP-43的转基因小鼠,其中包含家族性肌萎缩性侧索硬化相关的M337V突变,并鉴定出两条发展出严重程度和进展程度不同的神经表型的品系。第一个在出生后早期发展出快速的皮质神经变性表型,其特征在于TDP-43断裂和内源性鼠Tdp-43丢失,但完全缺乏泛素或TDP-43的聚集体。尽管小鼠Tdp-43损失了30%,并且分子量较低的TDP-43物种积聚,但第二条低表达株却老化到25个月,而没有严重的神经退行性表型。此外,在神经变性期间产生的TDP-43片段不是C-末端,而是源自人TDP-43的中央部分。因此,我们发现细胞丢失不需要聚集,鼠Tdp-43的丢失并不一定足以形成严重的神经退行性表型,并且小鼠模型中较低分子量的TDP-43阳性物种不应固有地被认为具有代表性。人类疾病。我们的发现对于TDP-43蛋白病的其他转基因研究的解释具有重要意义。

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