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PMID: 26633882 已发表 · epublish 英语

Mouse models of human PIK3CA-related brain overgrowth have acutely treatable epilepsy.

eLife ·第 4 卷 ·2016-08-22

Roy Achira, Skibo Jonathan, Kalume Franck, Ni Jing, Rankin Sherri, Lu Yiling, Dobyns William B, Mills Gordon B, Zhao Jean J, Baker Suzanne J, Millen Kathleen J

摘要

Mutations in the catalytic subunit of phosphoinositide 3-kinase (PIK3CA) and other PI3K-AKT pathway components have been associated with cancer and a wide spectrum of brain and body overgrowth. In the brain, the phenotypic spectrum of PIK3CA-related segmental overgrowth includes bilateral dysplastic megalencephaly, hemimegalencephaly and focal cortical dysplasia, the most common cause of intractable pediatric epilepsy. We generated mouse models expressing the most common activating Pik3ca mutations (H1047R and E545K) in developing neural progenitors. These accurately recapitulate all the key human pathological features including brain enlargement, cortical malformation, hydrocephalus and epilepsy, with phenotypic severity dependent on the mutant allele and its time of activation. Underlying mechanisms include increased proliferation, cell size and altered white matter. Notably, we demonstrate that acute 1 hr-suppression of PI3K signaling despite the ongoing presence of dysplasia has dramatic anti-epileptic benefit. Thus PI3K inhibitors offer a promising new avenue for effective anti-epileptic therapy for intractable pediatric epilepsy patients.

关键词
BKM120 PI3K cortical dysplasia epilepsy human biology medicine megalencephaly mouse mouse models neuroscience
文献信息
期刊
eLife
期刊简称
Elife
发表日期
2016-08-22
收录日期
2016-01-28
更新日期
2016-10-25
语言
英语
国家/地区
England
NLM ID
101579614
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