Shen Xueyi, Anirudhan Jithu, Fatima Ambrin, Plant Estelle, Szemes Tünde, Bouveret Zélie, Keruzore Marc, Kricha Sadia, Nan Xinsheng, Sabaté San José Alba, Bianchin Samuel, Veraghen Bérénice, Delhaye Louis-Paul, Mian Bilal Ahmad, Khalid Lubaba Bintee, Ali Farhan, Zahra Hijab, Ali Asmat, Toft Mathias, Dieu Marc, Achouri Younes, Li Meng, Renard Patricia, Van Lint Carine, Poulard Coralie, Iqbal Zafar, Bellefroid Eric J
Laboratory of Developmental Genetics, Department of Molecular Biology and ULB Neuroscience Institute (UNI), Université Libre de Bruxelles, Gosselies 6041, Belgium.
Department of Biological and Biomedical Sciences, Aga Khan University, Karachi 74800, Pakistan.
eNeuro. 2025 Jun 20;12(6). doi: 10.1523/ENEURO.0377-24.2025. Print 2025 Jun.
Dmrta2 (also designated Dmrt5) is a transcriptional regulator expressed in cortical progenitors in a caudomedial/rostrolateral gradient with important roles at different steps of cortical development. Dmrta2 has been suggested to act in cortex development mainly by differential suppression of and other homeobox transcription factors such as the ventral telencephalic regulator , which remains to be fully demonstrated. Here we have addressed the epistatic relation between Pax6 and Dmrta2 by comparing phenotypes in mutant embryos or embryos overexpressing both genes in various allelic combinations. We show that Dmrta2 cooperates with Pax6 in the maintenance of cortical identity in dorsal telencephalic progenitors and that it acts as a transcriptional repressor of to control cortical patterning. Mechanistically, we show that in P19 cells, Dmrta2 acts as a DNA binding-dependent repressor on the enhancer and that a point mutation that affects its DNA binding properties identified in a consanguineous family leads to agenesis of the corpus callosum, pachygyria, and the absence of the cingulate gyrus. Finally, we provide evidence that Dmrta2 binds components of the NuRD repressor complex and interacts with zinc finger proteins such as Zfp423. Together, our results highlight the importance and conserved function of Dmrta2 in cortical development and provide novel insights into its mechanism of action.
Dmrta2(也称为Dmrt5)是一种转录调节因子,在皮质祖细胞中以尾内侧/吻外侧梯度表达,在皮质发育的不同阶段发挥重要作用。有人提出Dmrta2主要通过差异抑制 以及其他同源盒转录因子(如腹侧端脑调节因子 )来参与皮质发育,但其作用机制仍有待充分证实。在此,我们通过比较突变胚胎或在各种等位基因组合中同时过表达这两个基因的胚胎的表型,研究了Pax6与Dmrta2之间的上位性关系。我们发现,Dmrta2与Pax6协同维持背侧端脑祖细胞的皮质特性,并且它作为 的转录抑制因子来控制皮质模式形成。在机制上,我们表明在P19细胞中,Dmrta2作为一种依赖于DNA结合的抑制因子作用于 增强子,并且在一个近亲家族中鉴定出的影响其DNA结合特性的点突变会导致胼胝体发育不全、巨脑回以及扣带回缺失。最后,我们提供证据表明Dmrta2与NuRD抑制复合物的成分结合,并与锌指蛋白(如Zfp423)相互作用。总之,我们的结果突出了Dmrta2在皮质发育中的重要性和保守功能,并为其作用机制提供了新的见解。