异位症(医学)
前脑
生物
室管膜下区
细胞生物学
神经科学
纤毛
神经元迁移
多小脑回
微管
无意识
形态发生
解剖
中枢神经系统
癫痫
遗传学
基因
作者
Donia Zaidi,Kaviya Chinnappa,Berfu Nur Yiğit,Valeria Viola,Carmen Cifuentes-Díaz,Ammar Jabali,Ana Uzquiano,Emilie Lemesre,Franck Perez,Julia Ladewig,Julien Ferent,Nurhan Özlü,Fiona Francis
标识
DOI:10.1083/jcb.202310157
摘要
Subcortical heterotopia is a cortical malformation associated with epilepsy, intellectual disability, and an excessive number of cortical neurons in the white matter. Echinoderm microtubule-associated protein like 1 (EML1) mutations lead to subcortical heterotopia, associated with abnormal radial glia positioning in the cortical wall, prior to malformation onset. This perturbed distribution of proliferative cells is likely to be a critical event for heterotopia formation; however, the underlying mechanisms remain unexplained. This study aimed to decipher the early cellular alterations leading to abnormal radial glia. In a forebrain conditional Eml1 mutant model and human patient cells, primary cilia and centrosomes are altered. Microtubule dynamics and cell cycle kinetics are also abnormal in mouse mutant radial glia. By rescuing microtubule formation in Eml1 mutant embryonic brains, abnormal radial glia delamination and heterotopia volume were significantly reduced. Thus, our new model of subcortical heterotopia reveals the causal link between Eml1’s function in microtubule regulation and cell position, both critical for correct cortical development.
科研通智能强力驱动
Strongly Powered by AbleSci AI