ATXN1 repeat expansions confer risk for amyotrophic lateral sclerosis and contribute to TDP-43 mislocalization.

ATXN1 重复扩增会增加患肌萎缩侧索硬化症的风险,并导致 TDP-43 错误定位

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作者:Tazelaar Gijs H P, Boeynaems Steven, De Decker Mathias, van Vugt Joke J F A, Kool Lindy, Goedee H Stephan, McLaughlin Russell L, Sproviero William, Iacoangeli Alfredo, Moisse Matthieu, Jacquemyn Maarten, Daelemans Dirk, Dekker Annelot M, van der Spek Rick A, Westeneng Henk-Jan, Kenna Kevin P, Assialioui Abdelilah, Da Silva Nica, Povedano Mónica, Pardina Jesus S Mora, Hardiman Orla, Salachas François, Millecamps Stéphanie, Vourc'h Patrick, Corcia Philippe, Couratier Philippe, Morrison Karen E, Shaw Pamela J, Shaw Christopher E, Pasterkamp R Jeroen, Landers John E, Van Den Bosch Ludo, Robberecht Wim, Al-Chalabi Ammar, van den Berg Leonard H, Van Damme Philip, Veldink Jan H, van Es Michael A
Increasingly, repeat expansions are being identified as part of the complex genetic architecture of amyotrophic lateral sclerosis. To date, several repeat expansions have been genetically associated with the disease: intronic repeat expansions in C9orf72, polyglutamine expansions in ATXN2 and polyalanine expansions in NIPA1. Together with previously published data, the identification of an amyotrophic lateral sclerosis patient with a family history of spinocerebellar ataxia type 1, caused by polyglutamine expansions in ATXN1, suggested a similar disease association for the repeat expansion in ATXN1. We, therefore, performed a large-scale international study in 11 700 individuals, in which we showed a significant association between intermediate ATXN1 repeat expansions and amyotrophic lateral sclerosis (P = 3.33 × 10(-7)). Subsequent functional experiments have shown that ATXN1 reduces the nucleocytoplasmic ratio of TDP-43 and enhances amyotrophic lateral sclerosis phenotypes in Drosophila, further emphasizing the role of polyglutamine repeat expansions in the pathophysiology of amyotrophic lateral sclerosis.

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