INSERM U 1270, Paris, France; Sorbonne University, UMR-S 1270, 75005 Paris, France; Institut du Fer à Moulin, Paris, France.
Central Institute of Mental Health, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany; HITBR Hector Institute for Translational Brain Research gGmbH, Mannheim, Germany; German Cancer Research Center (DKFZ), Heidelberg, Germany.
Cell Rep. 2019 Aug 6;28(6):1596-1611.e10. doi: 10.1016/j.celrep.2019.06.096.
Apical radial glia (aRGs) are predominant progenitors during corticogenesis. Perturbing their function leads to cortical malformations, including subcortical heterotopia (SH), characterized by the presence of neurons below the cortex. EML1/Eml1 mutations lead to SH in patients, as well as to heterotopic cortex (HeCo) mutant mice. In HeCo mice, some aRGs are abnormally positioned away from the ventricular zone (VZ). Thus, unraveling EML1/Eml1 function will clarify mechanisms maintaining aRGs in the VZ. We pinpoint an unknown EML1/Eml1 function in primary cilium formation. In HeCo aRGs, cilia are shorter, less numerous, and often found aberrantly oriented within vesicles. Patient fibroblasts and human cortical progenitors show similar defects. EML1 interacts with RPGRIP1L, a ciliary protein, and RPGRIP1L mutations were revealed in a heterotopia patient. We also identify Golgi apparatus abnormalities in EML1/Eml1 mutant cells, potentially upstream of the cilia phenotype. We thus reveal primary cilia mechanisms impacting aRG dynamics in physiological and pathological conditions.
顶端放射状胶质细胞(aRGs)是皮质发生过程中的主要祖细胞。干扰其功能会导致皮质畸形,包括皮质下异位(SH),其特征是皮层下存在神经元。EML1/Eml1 突变会导致患者出现 SH,以及 HeCo 突变小鼠出现异位皮质(HeCo)。在 HeCo 小鼠中,一些 aRGs 异常定位于脑室区(VZ)之外。因此,阐明 EML1/Eml1 的功能将阐明维持 aRGs 在 VZ 中的机制。我们发现了 EML1/Eml1 在初级纤毛形成中的一个未知功能。在 HeCo 的 aRGs 中,纤毛较短、较少,并且经常在囊泡中以异常的方向发现。患者成纤维细胞和人皮质祖细胞也表现出类似的缺陷。EML1 与纤毛蛋白 RPGRIP1L 相互作用,在一位异位患者中发现了 RPGRIP1L 突变。我们还在 EML1/Eml1 突变细胞中发现了高尔基体异常,这可能是纤毛表型的上游事件。因此,我们揭示了在生理和病理条件下影响 aRG 动力学的初级纤毛机制。