Okazaki Shin, Ohsawa Maki, Kuki Ichiro, Kawawaki Hisashi, Koriyama Takeshi, Ri Shingou, Ichiba Hiroyuki, Hai Eishu, Inoue Takeshi, Nakamura Hiroaki, Goto Yu-Ichi, Tomiwa Kiyotaka, Yamano Tsunekazu, Kitamura Kunio, Itoh Masayuki
Department of Pediatric Neurology, Osaka City General Hospital, Osaka, Japan.
Acta Neuropathol. 2008 Oct;116(4):453-62. doi: 10.1007/s00401-008-0382-2. Epub 2008 May 6.
X-linked lissencephaly with abnormal genitalia (XLAG) is a rare disorder caused by mutations in the aristaless-related homeobox (ARX) gene, located on Xp22.13. Arx-null mice show loss of tangential migration of GABAergic interneurons, presumably being related to caudal ganglionic eminence tangential migration. In the present study, we investigated a subpopulation of GABAergic interneurons in the brain of an infant with XLAG, who had a novel nonsense mutation of the ARX gene, compared with those of age-matched normal controls and Miller-Dieker syndrome. We performed immunocytochemistry for interneuron and migration markers. We found that glutamic acid decarboxylase (GAD)- and calretinin (CR)-containing cells were significantly reduced in the neocortex and located in the white matter and neocortical subventricular zone, while neuropeptide Y- or cholecystokinin-containing cells were normally distributed. Moreover, in the neocortical subventricular region, the GAD- and CR-containing cells expressed the radial migration marker Mash-1 as well as nestin. Our findings suggest that ARX protein controls not only the tangential migration of GABAergic interneurons from the ganglionic eminence, but also may serve to induce radial migration from the neocortical subventricular zone.
伴有生殖器异常的X连锁无脑回畸形(XLAG)是一种由位于Xp22.13的无尾相关同源盒(ARX)基因突变引起的罕见疾病。Arx基因敲除小鼠显示GABA能中间神经元的切向迁移丧失,推测这与尾侧神经节隆起的切向迁移有关。在本研究中,我们调查了一名患有XLAG的婴儿大脑中GABA能中间神经元的一个亚群,该婴儿具有ARX基因的一种新的无义突变,并将其与年龄匹配的正常对照和米勒-迪克尔综合征患者的进行了比较。我们对中间神经元和迁移标记物进行了免疫细胞化学检测。我们发现,在新皮质中,含谷氨酸脱羧酶(GAD)和钙视网膜蛋白(CR)的细胞显著减少,且位于白质和新皮质室下区,而含神经肽Y或胆囊收缩素的细胞分布正常。此外,在新皮质室下区域,含GAD和CR的细胞表达了径向迁移标记物Mash-1以及巢蛋白。我们的研究结果表明,ARX蛋白不仅控制GABA能中间神经元从神经节隆起的切向迁移,还可能有助于诱导从新皮质室下区的径向迁移。