Uittenbogaard Martine, Martinka Debra L, Chiaramello Anne
Department of Anatomy and Cell Biology, George Washington University Medical Center, 2300 I Street NW, Washington, DC 20037, USA.
J Neurochem. 2003 Feb;84(4):678-88. doi: 10.1046/j.1471-4159.2003.01572.x.
Nex1/MATH-2 is a neurogenic basic Helix-Loop-Helix (bHLH) transcription factor that belongs to the NeuroD subfamily. Its expression parallels that of the GAP-43 gene and peaks during brain development, when neurite outgrowth and synaptogenesis are highly active. We previously observed a direct correlation between the levels of expression of Nex1 and GAP-43 proteins, which resulted in extensive neurite outgrowth and neuronal differentiation of PC12 cells in the absence of nerve growth factor. Since the GAP-43 gene is a target for bHLH regulation, we investigated whether Nex1 could regulate the activity of the GAP-43 promoter. We found that among the members of the NeuroD subfamily, Nex1 promoted maximal activity of the GAP-43 promoter. The Nex1-mediated activity is restricted to the conserved E1-E2 cluster located near the major transcription start sites. By electrophoretic mobility shift assay and site-directed mutagenesis, we showed that Nex1 binds as homodimers and that the E1 E-box is a high affinity binding site. We further found that Nex1 released the ME1 E-protein-mediated repression in a concentration dependent manner. Thus, the E1-E2 cluster has a dual function: it can mediate activation or repression depending on the interacting bHLH proteins. Finally, a series of N-terminal and C-terminal deletions revealed that Nex1 transcriptional activity is linked to two distinct transactivation domains, TAD1 and TAD2, with TAD1 being unique to Nex1. Together, our results suggest that Nex1 may engage in selective interactions with components of the core transcriptional machinery whose assembly is dictated by the architecture of the GAP-43 promoter and cellular environment.
Nex1/MATH-2是一种神经源性碱性螺旋-环-螺旋(bHLH)转录因子,属于NeuroD亚家族。其表达与GAP-43基因的表达平行,并在脑发育过程中达到峰值,此时神经突生长和突触形成高度活跃。我们之前观察到Nex1和GAP-43蛋白的表达水平之间存在直接相关性,这导致在没有神经生长因子的情况下PC12细胞出现广泛的神经突生长和神经元分化。由于GAP-43基因是bHLH调控的靶点,我们研究了Nex1是否能调节GAP-43启动子的活性。我们发现,在NeuroD亚家族成员中,Nex1促进了GAP-43启动子的最大活性。Nex1介导的活性仅限于位于主要转录起始位点附近的保守E1-E2簇。通过电泳迁移率变动分析和定点诱变,我们表明Nex1以同二聚体形式结合,并且E1 E盒是一个高亲和力结合位点。我们进一步发现Nex1以浓度依赖的方式解除了ME1 E蛋白介导的抑制作用。因此,E1-E2簇具有双重功能:它可以根据相互作用的bHLH蛋白介导激活或抑制。最后,一系列N端和C端缺失表明,Nex1的转录活性与两个不同的反式激活结构域TAD1和TAD2相关,其中TAD1是Nex1特有的。总之,我们的结果表明,Nex1可能与核心转录机制的成分进行选择性相互作用,其组装由GAP-43启动子的结构和细胞环境决定。