Ramos Alberto, Ho Wai Chi, Forte Stephanie, Dickson Kathleen, Boutilier Jacqueline, Favell Kristy, Barker Philip A
Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada H3A 2B4.
J Neurosci. 2007 Feb 7;27(6):1498-506. doi: 10.1523/JNEUROSCI.4806-06.2007.
Injury-induced expression of the p75 neurotrophin receptor (p75NTR) in the CNS facilitates neuronal apoptosis and prevents neuronal regrowth, but the mechanisms regulating p75NTR expression are poorly characterized. In this study, we showed that hypo-osmolarity induces p75NTR expression in primary neurons, and, using a comparative genomics approach, we identified conserved elements in the 25 kb upstream sequences of the rat, mouse, and human p75NTR genes. We found that only one of these, a proximal region rich in Sp1 sites, responds to changes in hypo-osmolarity. We then showed that Sp1 DNA binding activity is increased in cells exposed to hypo-osmolarity, established that hypo-osmolarity enhanced Sp1 binding to the endogenous p75NTR promoter, and showed that Sp1 is required for p75NTR expression induced by hypo-osmolarity. We examined how Sp1 is regulated to effect these changes and established that Sp1 turnover is strongly inhibited by hypo-osmolarity. We propose that stress-induced Sp1 accumulation that results from reductions in Sp1 turnover rate contributes to injury-induced gene expression.
损伤诱导的中枢神经系统中p75神经营养因子受体(p75NTR)的表达促进神经元凋亡并阻止神经元再生,但调节p75NTR表达的机制仍不清楚。在本研究中,我们发现低渗可诱导原代神经元中p75NTR的表达,并且通过比较基因组学方法,我们在大鼠、小鼠和人类p75NTR基因上游25 kb序列中鉴定出保守元件。我们发现其中只有一个富含Sp1位点的近端区域对低渗变化有反应。然后我们表明,暴露于低渗环境的细胞中Sp1 DNA结合活性增加,证实低渗增强了Sp1与内源性p75NTR启动子的结合,并表明Sp1是低渗诱导p75NTR表达所必需的。我们研究了Sp1如何被调节以实现这些变化,并证实低渗强烈抑制Sp1的周转。我们提出,由Sp1周转率降低导致的应激诱导的Sp1积累有助于损伤诱导的基因表达。