Development and Stem Cells Program, Monash Biomedicine Discovery Institute and Department of Anatomy and Developmental Biology, Monash University, Melbourne, Victoria, Australia.
Sci Prog. 2024 Jul-Sep;107(3):368504241264998. doi: 10.1177/00368504241264998.
Establishing a functional nervous system is a complex process requiring tightly controlled gene expression programs to achieve the correct differentiation of distinct neuronal subtypes. The molecular programs required for neurons to acquire neuron-type-specific, and core pan-neuronal features mostly rely on sequence-specific transcription factors (TFs), which recognize and bind to cis-regulatory motifs present in the promoters of target genes. Recently, we investigated the role and mode of action of the NF-Y complex, a ubiquitously expressed transcriptional master regulator, in the nervous system. We found that NFYA-1 is a pervasive regulator of neuron-specific and pan-neuronal gene batteries that are essential for neuronal development and function. Furthermore, we concluded that NFYA-1 acts cell autonomously by either directly binding to conserved motifs in target gene promoter regions or indirectly by regulating other transcriptional regulators to fine-tune gene expression. However, further studies are required to fully define the impact of the NF-Y complex on nervous system regulatory networks and how NF-Y coordinates with other TFs in this regard.
建立一个功能性的神经系统是一个复杂的过程,需要严格控制基因表达程序,以实现不同神经元亚型的正确分化。神经元获得神经元类型特异性和核心全神经元特征所需的分子程序主要依赖于序列特异性转录因子(TFs),这些转录因子能够识别和结合靶基因启动子中存在的顺式调控基序。最近,我们研究了 NF-Y 复合物(一种普遍表达的转录主控调节剂)在神经系统中的作用和作用模式。我们发现 NFYA-1 是神经元特异性和全神经元基因电池的普遍调节剂,这些基因电池对于神经元的发育和功能至关重要。此外,我们得出结论,NFYA-1 通过直接结合靶基因启动子区域中的保守基序或通过调节其他转录调节剂来精细调节基因表达,从而发挥细胞自主作用。然而,需要进一步的研究来充分定义 NF-Y 复合物对神经系统调控网络的影响,以及 NF-Y 如何在这方面与其他 TF 协调。