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首页> 外文期刊>Cell Communication and Signaling >TrkB interacts with ErbB4 and regulates NRG1-induced NR2B phosphorylation in cortical neurons before synaptogenesis
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TrkB interacts with ErbB4 and regulates NRG1-induced NR2B phosphorylation in cortical neurons before synaptogenesis

机译:TrkB与ErbB4相互作用,并在突触发生之前调节皮质神经元中NRG1诱导的NR2B磷酸化。

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Background Neuregulin 1 (NRG1) and NMDARs play important roles in various neuronal functions including neural development. NMDARs also promote many cellular events such as proliferation and survival of neuroblasts before synapse formation. Although many recent studies have indicated that NRG1 regulates NMDAR function in cortical neurons, the effect of NRG1 on NMDAR activation before synapse formation is not well studied. Results NRG1 induces activation of NMDAR subunit NR2B, and tropomyosin-related kinase receptor B (TrkB), the receptor for BDNF via activation of phospholipase C-gamma (PLC-γ) in immature primary cortical neurons. Our data using TrkB inhibitor (K252a), TrkB siRNA and TrkB?/? neurons demonstrated that TrkB inhibition suppresses NRG1-induced NR2B activation in neurons. We found that NRG1 stimulation leads to GABAA receptor-mediated TrkB activation. Co-immunoprecipitation and proximity ligase assay showed that TrkB interacts with ErbB4 (NRG1 receptor) and the TrkB-ErbB4 interaction was increased following NRG1 treatment. A significant reduction in TrkB-ErbB4 interaction was observed in the prefrontal cortex of schizophrenia subjects. We found significant increase in released BDNF levels following NRG1 treatment, which was inhibited by ErbB4 inhibitor, AG1478. In addition, pretreatment with BDNF neutralizing antibody, but not control IgG abolished NRG1-induced increases in phospho-TrkB and phospho-NR2B levels. Moreover, studies using TrkB mutants showed that intercellular domain of TrkB is necessary for TrkB-ErbB4 interaction and NR2B activation. Conclusions BDNF/TrkB signaling plays an important role in the NRG1-stimulated NR2B regulation. These findings could be of relevance to many neurodevelopmental disorders, as NRG1 and BDNF signaling pathways have been implicated in autism and schizophrenia.
机译:背景神经调节蛋白1(NRG1)和NMDAR在包括神经发育在内的各种神经元功能中发挥重要作用。 NMDAR还促进许多细胞事件,例如突触形成前神经母细胞的增殖和存活。尽管最近的许多研究表明NRG1调节皮层神经元中的NMDAR功能,但对突触形成之前NRG1对NMDAR激活的影响还没有很好的研究。结果NRG1通过激活未成熟的皮层神经元中的磷脂酶C-γ(PLC-γ)来激活NMDAR亚基NR2B和原肌球蛋白相关激酶受体B(TrkB)的激活。我们使用TrkB抑制剂(K252a),TrkB siRNA和TrkB?/?的数据。神经元证明TrkB抑制抑制神经元中NRG1诱导的NR2B激活。我们发现,NRG1刺激导致GABA A 受体介导的TrkB激活。免疫共沉淀和邻近连接酶分析表明,Nrk1处理后,TrkB与ErbB4(NRG1受体)相互作用,而TrkB-ErbB4相互作用增加。在精神分裂症患者的前额叶皮层中观察到TrkB-ErbB4相互作用的显着降低。我们发现NRG1处理后释放的BDNF水平显着增加,这被ErbB4抑制剂AG1478抑制。另外,用BDNF中和抗体进行预处理,但未进行对照IgG的处理,废除了NRG1诱导的磷酸TrkB和磷酸N2B水平的增加。此外,使用TrkB突变体的研究表明TrkB的胞间域对于TrkB-ErbB4相互作用和NR2B激活是必需的。结论BDNF / TrkB信号传导在NRG1刺激的NR2B调节中起重要作用。这些发现可能与许多神经发育障碍有关,因为自闭症和精神分裂症涉及NRG1和BDNF信号通路。

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