Calvo Laura, Anta Begoña, López-Benito Saray, Martín-Rodriguez Carlos, Lee Francis S, Pérez Pilar, Martín-Zanca Dionisio, Arévalo Juan C
Department of Cell Biology and Pathology, Instituto de Neurociencias de Castilla y León (INCyL), and Institute of Biomedical Research of Salamanca (IBSAL), 37007 Salamanca, Spain, and.
Department of Psychiatry, Weill Cornell Medical College, Cornell University, New York, New York 10065.
J Neurosci. 2015 May 6;35(18):7190-202. doi: 10.1523/JNEUROSCI.4646-14.2015.
The development of the nervous system is a temporally and spatially coordinated process that relies on the proper regulation of the genes involved. Neurotrophins and their receptors are directly responsible for the survival and differentiation of sensory and sympathetic neurons; however, it is not fully understood how genes encoding Trk neurotrophin receptors are regulated. Here, we show that rat Bex3 protein specifically regulates TrkA expression by acting at the trkA gene promoter level. Bex3 dimerization and shuttling to the nucleus regulate the transcription of the trkA promoter under basal conditions and also enhance nerve growth factor (NGF)-mediated trkA promoter activation. Moreover, qChIP assays indicate that Bex3 associates with the trkA promoter within a 150 bp sequence, immediately upstream from the transcription start site, which is sufficient to mediate the effects of Bex3. Consequently, the downregulation of Bex3 using shRNA increases neuronal apoptosis in NGF-dependent sensory neurons deprived of NGF and compromises PC12 cell differentiation in response to NGF. Our results support an important role for Bex3 in the regulation of TrkA expression and in NGF-mediated functions through modulation of the trkA promoter.
神经系统的发育是一个时间和空间上协调的过程,它依赖于相关基因的适当调控。神经营养因子及其受体直接负责感觉神经元和交感神经元的存活与分化;然而,编码Trk神经营养因子受体的基因是如何被调控的,目前尚未完全清楚。在这里,我们表明大鼠Bex3蛋白通过作用于trkA基因启动子水平来特异性调节TrkA的表达。Bex3二聚化并穿梭至细胞核,在基础条件下调节trkA启动子的转录,还能增强神经生长因子(NGF)介导的trkA启动子激活。此外,定量染色质免疫沉淀(qChIP)分析表明,Bex3在转录起始位点上游150 bp序列内与trkA启动子结合,这足以介导Bex3的作用。因此,使用短发夹RNA(shRNA)下调Bex3会增加在缺乏NGF的情况下依赖NGF的感觉神经元中的神经元凋亡,并损害PC12细胞对NGF的分化反应。我们的结果支持Bex3在通过调节trkA启动子来调控TrkA表达以及在NGF介导的功能中发挥重要作用。