Mattar Pierre, Britz Olivier, Johannes Christine, Nieto Marta, Ma Lin, Rebeyka Angela, Klenin Natalia, Polleux Franck, Guillemot François, Schuurmans Carol
University of Calgary, Calgary, Alberta, Canada T2N 4N1.
Dev Biol. 2004 Sep 15;273(2):373-89. doi: 10.1016/j.ydbio.2004.06.013.
Neurogenin (Ngn) 1 and Ngn2 encode basic-helix-loop-helix transcription factors expressed in the developing neocortex. Like other proneural genes, Ngns participate in the specification of neural fates and neuronal identities, but downstream effectors remain poorly defined. We set out to identify Ngn2 effectors in the cortex using a subtractive hybridization screen and identified several regionally expressed genes that were misregulated in Ngn2 and Ngn1;Ngn2 mutants. Included were genes down-regulated in germinal zone progenitors (e.g., Nlgn1, Unc5H4, and Dcc) and in postmitotic neurons in the cortical plate (e.g., Bhlhb5 and NFIB) and subplate (e.g., Mef2c, srGAP3, and protocadherin 9). Further analysis revealed that Ngn2 mutant subplate neurons were misspecified and that thalamocortical afferents (TCAs) that normally target this layer instead inappropriately projected towards the germinal zone. Strikingly, EphA5 and Sema3c, which encode repulsive guidance cues, were down-regulated in the Ngn2 and Ngn1;Ngn2 mutant germinal zones, providing a possible molecular basis for axonal targeting defects. Thus, we identified several new components of the differentiation cascade(s) activated downstream of Ngn1 and Ngn2 and provided novel insights into a new developmental process controlled by these proneural genes. Further analysis of the genes isolated in our screen should provide a fertile basis for understanding the molecular mechanisms underlying corticogenesis.
神经生成素(Ngn)1和Ngn2编码在新皮质发育过程中表达的碱性螺旋-环-螺旋转录因子。与其他神经源性基因一样,Ngn参与神经命运和神经元身份的特化,但下游效应因子仍不清楚。我们通过消减杂交筛选在皮质中鉴定Ngn2效应因子,并鉴定了几个在Ngn2和Ngn1;Ngn2突变体中表达失调的区域特异性基因。其中包括在生发区祖细胞(如Nlgn1、Unc5H4和Dcc)以及皮质板(如Bhlhb5和NFIB)和下层板(如Mef2c、srGAP3和原钙黏蛋白9)中的有丝分裂后神经元中下调的基因。进一步分析表明,Ngn2突变体下层板神经元的特化错误,并且通常靶向该层的丘脑皮质传入纤维(TCA)反而不恰当地向生发区投射。引人注目的是,编码排斥性导向线索的EphA5和Sema3c在Ngn2和Ngn1;Ngn2突变体生发区中下调,为轴突靶向缺陷提供了可能的分子基础。因此,我们鉴定了在Ngn1和Ngn2下游激活的分化级联的几个新成分,并为这些神经源性基因控制的新发育过程提供了新的见解。对我们筛选中分离出的基因的进一步分析应该为理解皮质发生的分子机制提供丰富的基础。