Araujo Daniel J, Anderson Ashley G, Berto Stefano, Runnels Wesley, Harper Matthew, Ammanuel Simon, Rieger Michael A, Huang Hung-Chung, Rajkovich Kacey, Loerwald Kristofer W, Dekker Joseph D, Tucker Haley O, Dougherty Joseph D, Gibson Jay R, Konopka Genevieve
Department of Neuroscience, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA;
Department of Genetics, Washington University School of Medicine, St. Louis, Missouri 63110, USA; Department of Psychiatry, Washington University School of Medicine, St. Louis, Missouri 63110, USA;
Genes Dev. 2015 Oct 15;29(20):2081-96. doi: 10.1101/gad.267989.115.
Mutations in the transcription factor Forkhead box p1 (FOXP1) are causative for neurodevelopmental disorders such as autism. However, the function of FOXP1 within the brain remains largely uncharacterized. Here, we identify the gene expression program regulated by FoxP1 in both human neural cells and patient-relevant heterozygous Foxp1 mouse brains. We demonstrate a role for FoxP1 in the transcriptional regulation of autism-related pathways as well as genes involved in neuronal activity. We show that Foxp1 regulates the excitability of striatal medium spiny neurons and that reduction of Foxp1 correlates with defects in ultrasonic vocalizations. Finally, we demonstrate that FoxP1 has an evolutionarily conserved role in regulating pathways involved in striatal neuron identity through gene expression studies in human neural progenitors with altered FOXP1 levels. These data support an integral role for FoxP1 in regulating signaling pathways vulnerable in autism and the specific regulation of striatal pathways important for vocal communication.
转录因子叉头框蛋白P1(FOXP1)的突变是导致自闭症等神经发育障碍的原因。然而,FOXP1在大脑中的功能在很大程度上仍未得到充分描述。在这里,我们确定了在人类神经细胞和与患者相关的杂合Foxp1小鼠大脑中由FoxP1调控的基因表达程序。我们证明了FoxP1在自闭症相关通路以及参与神经元活动的基因的转录调控中发挥作用。我们表明Foxp1调节纹状体中等棘状神经元的兴奋性,并且Foxp1的减少与超声波发声缺陷相关。最后,通过对FOXP1水平改变的人类神经祖细胞进行基因表达研究,我们证明了FoxP1在调节参与纹状体神经元身份的通路中具有进化保守作用。这些数据支持FoxP1在调节自闭症中易受损的信号通路以及对发声交流很重要的纹状体通路的特定调节中发挥不可或缺的作用。