中间神经元
加巴能
神经节隆起
新皮层
生物
神经科学
前脑
中枢神经系统
抑制性突触后电位
作者
Goichi Miyoshi,Yoichi Ueta,Yuki Yagasaki,Yusuke Kishi,Gord Fishell,Robert Machold,Mariko Miyata
标识
DOI:10.1073/pnas.2317783121
摘要
GABAergic inhibitory interneurons, originating from the embryonic ventral forebrain territories, traverse a convoluted migratory path to reach the neocortex. These interneuron precursors undergo sequential phases of tangential and radial migration before settling into specific laminae during differentiation. Here, we show that the developmental trajectory of FoxG1 expression is dynamically controlled in these interneuron precursors at critical junctures of migration. By utilizing mouse genetic strategies, we elucidate the pivotal role of precise changes in FoxG1 expression levels during interneuron specification and migration. Our findings underscore the gene dosage–dependent function of FoxG1 , aligning with clinical observations of FOXG1 haploinsufficiency and duplication in syndromic forms of autism spectrum disorders. In conclusion, our results reveal the finely tuned developmental clock governing cortical interneuron development, driven by temporal dynamics and the dose-dependent actions of FoxG1 .
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