肌萎缩侧索硬化
失智症
星形胶质增生
脊髓
转基因小鼠
SOD1
TARDBP公司
神经退行性变
发病机制
额颞叶变性
病理
胶质增生
生物
泛素
神经科学
转基因
医学
痴呆
中枢神经系统
疾病
遗传学
基因
作者
Leslie Bargsted,Danilo B. Medinas,Francisca Martínez Traub,Pablo Rozas,Natalia Albornoz,Melissa Nassif,Carolina Jerez,Alejandra Catenaccio,Felipe A. Court,Claudio Hetz,Soledad Matus
标识
DOI:10.1038/s41598-017-14399-5
摘要
Abstract Tar DNA binding protein 43 (TDP-43) is the principal component of ubiquitinated protein inclusions present in nervous tissue of most cases of both amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). Previous studies described a TDP-43 A315T transgenic mouse model that develops progressive motor dysfunction in the absence of protein aggregation or significant motoneuron loss, questioning its validity to study ALS. Here we have further characterized the course of the disease in TDP-43 A315T mice using a battery of tests and biochemical approaches. We confirmed that TDP-43 mutant mice develop impaired motor performance, accompanied by progressive body weight loss. Significant differences were observed in life span between genders, where females survived longer than males. Histopathological analysis of the spinal cord demonstrated a significant motoneurons loss, accompanied by axonal degeneration, astrogliosis and microglial activation. Importantly, histopathological alterations observed in TDP-43 mutant mice were similar to some characteristic changes observed in mutant SOD1 mice. Unexpectedly, we identified the presence of different species of disulfide-dependent TDP-43 aggregates in cortex and spinal cord tissue. Overall, this study indicates that TDP-43 A315T transgenic mice develop key features resembling key aspects of ALS, highlighting its relevance to study disease pathogenesis.
科研通智能强力驱动
Strongly Powered by AbleSci AI