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PMID: 23404338 已发表 · ppublish 英语

Myotonic dystrophy CTG expansion affects synaptic vesicle proteins, neurotransmission and mouse behaviour.

Brain : a journal of neurology ·第 136 卷 ·第 Pt 3 期 ·2013-04-23

Hernández-Hernández Oscar, Guiraud-Dogan Céline, Sicot Géraldine, Huguet Aline, Luilier Sabrina, Steidl Esther, Saenger Stefanie, Marciniak Elodie, Obriot Hélène, Chevarin Caroline, Nicole Annie, Revillod Lucile, Charizanis Konstantinos, Lee Kuang-Yung, Suzuki Yasuhiro, Kimura Takashi, Matsuura Tohru, Cisneros Bulmaro, Swanson Maurice S, Trovero Fabrice, Buisson Bruno, Bizot Jean-Charles, Hamon Michel, Humez Sandrine, Bassez Guillaume, Metzger Friedrich, Buée Luc, Munnich Arnold, Sergeant Nicolas, Gourdon Geneviève, Gomes-Pereira Mário

摘要

Myotonic dystrophy type 1 is a complex multisystemic inherited disorder, which displays multiple debilitating neurological manifestations. Despite recent progress in the understanding of the molecular pathogenesis of myotonic dystrophy type 1 in skeletal muscle and heart, the pathways affected in the central nervous system are largely unknown. To address this question, we studied the only transgenic mouse line expressing CTG trinucleotide repeats in the central nervous system. These mice recreate molecular features of RNA toxicity, such as RNA foci accumulation and missplicing. They exhibit relevant behavioural and cognitive phenotypes, deficits in short-term synaptic plasticity, as well as changes in neurochemical levels. In the search for disease intermediates affected by disease mutation, a global proteomics approach revealed RAB3A upregulation and synapsin I hyperphosphorylation in the central nervous system of transgenic mice, transfected cells and post-mortem brains of patients with myotonic dystrophy type 1. These protein defects were associated with electrophysiological and behavioural deficits in mice and altered spontaneous neurosecretion in cell culture. Taking advantage of a relevant transgenic mouse of a complex human disease, we found a novel connection between physiological phenotypes and synaptic protein dysregulation, indicative of synaptic dysfunction in myotonic dystrophy type 1 brain pathology.

文献信息
期刊
Brain : a journal of neurology
期刊简称
Brain
发表日期
2013-04-23
收录日期
2013-02-25
更新日期
2016-10-19
语言
英语
国家/地区
England
NLM ID
0372537
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