Colasante Gaia, Simonet Jacqueline C, Calogero Raffaele, Crispi Stefania, Sessa Alessandro, Cho Ginam, Golden Jeffrey A, Broccoli Vania
Department of Neuroscience, San Raffaele Scientific Institute, Milan 20132, Italy.
Cell and Molecular Biology Graduate Group, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA 19104, USA.
Cereb Cortex. 2015 Feb;25(2):322-35. doi: 10.1093/cercor/bht222. Epub 2013 Aug 22.
Mutations in the Aristaless-related homeobox (ARX) gene are found in a spectrum of epilepsy and X-linked intellectual disability disorders. During development Arx is expressed in pallial ventricular zone (VZ) progenitor cells where the excitatory projection neurons of the cortex are born. Arx(-/Y) mice were shown to have decreased proliferation in the cortical VZ resulting in smaller brains; however, the basis for this reduced proliferation was not established. To determine the role of ARX on cell cycle dynamics in cortical progenitor cells, we generated cerebral cortex-specific Arx mouse mutants (cKO). The loss of pallial Arx resulted in the reduction of cortical progenitor cells, particularly the proliferation of intermediate progenitor cells (IPCs) was affected. Later in development and postnatally cKO brains showed a reduction of upper layer but not deeper layer neurons consistent with the IPC defect. Transcriptional profile analysis of E14.5 Arx-ablated cortices compared with control revealed that CDKN1C, an inhibitor of cell cycle progression, is overexpressed in the cortical VZ and SVZ of Arx KOs throughout corticogenesis. We also identified ARX as a direct regulator of Cdkn1c transcription. Together these data support a model where ARX regulates the expansion of cortical progenitor cells through repression of Cdkn1c.
无触角相关同源框(ARX)基因突变见于一系列癫痫和X连锁智力障碍疾病。在发育过程中,Arx在皮质脑室区(VZ)祖细胞中表达,皮质的兴奋性投射神经元在此处产生。Arx(- / Y)小鼠显示皮质VZ增殖减少,导致脑体积变小;然而,这种增殖减少的基础尚未明确。为了确定ARX在皮质祖细胞细胞周期动力学中的作用,我们构建了大脑皮质特异性Arx小鼠突变体(cKO)。皮质Arx的缺失导致皮质祖细胞减少,特别是中间祖细胞(IPC)的增殖受到影响。在发育后期和出生后,cKO大脑显示上层神经元减少,但深层神经元未减少,这与IPC缺陷一致。与对照相比,对E14.5期Arx缺失皮质进行转录谱分析发现,细胞周期进程抑制剂CDKN1C在整个皮质发生过程中在Arx基因敲除小鼠的皮质VZ和SVZ中过表达。我们还确定ARX是Cdkn1c转录的直接调节因子。这些数据共同支持了一个模型,即ARX通过抑制Cdkn1c来调节皮质祖细胞的扩增。