Bolognani Federico, Tanner Daniel C, Merhege Melissa, Deschênes-Furry Julie, Jasmin Bernard, Perrone-Bizzozero Nora I
Department of Neurosciences, University of New Mexico School of Medicine, Albuquerque, NM 87131, USA.
J Neurochem. 2006 Feb;96(3):790-801. doi: 10.1111/j.1471-4159.2005.03607.x. Epub 2006 Jan 9.
HuD is a neuronal-specific RNA-binding protein that binds to and stabilizes the mRNAs of growth-associated protein-43 (GAP-43) and other neuronal proteins. HuD expression increases during brain development, nerve regeneration, and learning and memory, suggesting that this protein is important for controlling gene expression during developmental and adult plasticity. To examine the function of HuD in vivo, we generated transgenic mice overexpressing human HuD under the control of the calcium-calmodulin-dependent protein kinase IIalpha promoter. The transgene was expressed at high levels throughout the forebrain, including the hippocampal formation, amygdala and cerebral cortex. Using quantitative in situ hybridization, we found that HuD overexpression led to selective increases in GAP-43 mRNA in hippocampal dentate granule cells and neurons in the lateral amygdala and layer V of the neorcortex. In contrast, GAP-43 pre-mRNA levels were unchanged or decreased in the same neuronal populations. Comparison of the levels of mature GAP-43 mRNA and pre-mRNA in the same neurons of transgenic mice suggested that HuD increased the stability of the transcript. Confirming this, mRNA decay assays revealed that the GAP-43 mRNA was more stable in brain extracts from HuD transgenic mice than non-transgenic littermates. In conclusion, our results demonstrate that HuD overexpression is sufficient to increase GAP-43 mRNA stability in vivo.
HuD是一种神经元特异性RNA结合蛋白,它能与生长相关蛋白43(GAP - 43)及其他神经元蛋白的mRNA结合并使其稳定。在大脑发育、神经再生以及学习和记忆过程中,HuD的表达会增加,这表明该蛋白在发育和成年可塑性过程中对基因表达的调控起着重要作用。为了在体内研究HuD的功能,我们构建了在钙调蛋白依赖性蛋白激酶IIα启动子控制下过表达人HuD的转基因小鼠。转基因在整个前脑高水平表达,包括海马结构、杏仁核和大脑皮层。通过定量原位杂交,我们发现HuD过表达导致海马齿状颗粒细胞、外侧杏仁核神经元以及新皮层第V层中GAP - 43 mRNA选择性增加。相比之下,相同神经元群体中GAP - 43前体mRNA水平未变或降低。对转基因小鼠相同神经元中成熟GAP - 43 mRNA和前体mRNA水平的比较表明,HuD增加了转录本的稳定性。与此相符,mRNA降解分析显示,与非转基因同窝小鼠相比,HuD转基因小鼠脑提取物中的GAP - 43 mRNA更稳定。总之,我们的结果表明,HuD过表达足以在体内增加GAP - 43 mRNA的稳定性。