神经退行性变
TARDBP公司
肌萎缩侧索硬化
额颞叶变性
生物
失智症
C9orf72
基因
发病机制
遗传学
医学
疾病
神经科学
三核苷酸重复扩增
病理
痴呆
免疫学
SOD1
等位基因
作者
Eva Maria Johanna de Boer,Viyanti K Orie,Timothy L. Williams,Mark R. Baker,Hugo M. De Oliveira,Tuomo Polvikoski,Matthew Silsby,Parvathi Menon,Mehdi van den Bos,Glenda M. Halliday,Leonard H. van den Berg,Ludo Van Den Bosch,Philip Van Damme,Matthew C. Kiernan,Michael A. van Es,Steve Vucic
标识
DOI:10.1136/jnnp-2020-322983
摘要
Inclusions of pathogenic deposits containing TAR DNA-binding protein 43 (TDP-43) are evident in the brain and spinal cord of patients that present across a spectrum of neurodegenerative diseases. For instance, the majority of patients with sporadic amyotrophic lateral sclerosis (up to 97%) and a substantial proportion of patients with frontotemporal lobar degeneration (~45%) exhibit TDP-43 positive neuronal inclusions, suggesting a role for this protein in disease pathogenesis. In addition, TDP-43 inclusions are evident in familial ALS phenotypes linked to multiple gene mutations including the TDP-43 gene coding ( TARDBP ) and unrelated genes (eg, C9orf72 ). While TDP-43 is an essential RNA/DNA binding protein critical for RNA-related metabolism, determining the pathophysiological mechanisms through which TDP-43 mediates neurodegeneration appears complex, and unravelling these molecular processes seems critical for the development of effective therapies. This review highlights the key physiological functions of the TDP-43 protein, while considering an expanding spectrum of neurodegenerative diseases associated with pathogenic TDP-43 deposition, and dissecting key molecular pathways through which TDP-43 may mediate neurodegeneration.
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