Khoutorsky Arkady, Bonin Robert P, Sorge Robert E, Gkogkas Christos G, Pawlowski Sophie Anne, Jafarnejad Seyed Mehdi, Pitcher Mark H, Alain Tommy, Perez-Sanchez Jimena, Salter Eric W, Martin Loren, Ribeiro-da-Silva Alfredo, De Koninck Yves, Cervero Fernando, Mogil Jeffrey S, Sonenberg Nahum
Department of Biochemistry, McGill University, Montréal, Canada.
Rosalind and Morris Goodman Cancer Research Centre, McGill University, Montréal, Canada.
Elife. 2015 Dec 18;4:e12002. doi: 10.7554/eLife.12002.
Activation of the mechanistic/mammalian target of rapamycin (mTOR) kinase in models of acute and chronic pain is strongly implicated in mediating enhanced translation and hyperalgesia. However, the molecular mechanisms by which mTOR regulates nociception remain unclear. Here we show that deletion of the eukaryotic initiation factor 4E-binding protein 1 (4E-BP1), a major mTOR downstream effector, which represses eIF4E activity and cap-dependent translation, leads to mechanical, but not thermal pain hypersensitivity. Mice lacking 4E-BP1 exhibit enhanced spinal cord expression of neuroligin 1, a cell-adhesion postsynaptic protein regulating excitatory synapse function, and show increased excitatory synaptic input into spinal neurons, and a lowered threshold for induction of synaptic potentiation. Pharmacological inhibition of eIF4E or genetic reduction of neuroligin 1 levels normalizes the increased excitatory synaptic activity and reverses mechanical hypersensitivity. Thus, translational control by 4E-BP1 downstream of mTOR effects the expression of neuroligin 1 and excitatory synaptic transmission in the spinal cord, and thereby contributes to enhanced mechanical nociception.
在急慢性疼痛模型中,雷帕霉素作用机制/哺乳动物雷帕霉素靶蛋白(mTOR)激酶的激活与介导翻译增强和痛觉过敏密切相关。然而,mTOR调节伤害感受的分子机制仍不清楚。在此我们表明,真核生物起始因子4E结合蛋白1(4E-BP1)是mTOR的主要下游效应物,它抑制eIF4E活性和帽依赖性翻译,其缺失会导致机械性疼痛超敏反应,但不会导致热痛超敏反应。缺乏4E-BP1的小鼠脊髓中神经连接蛋白1的表达增强,神经连接蛋白1是一种调节兴奋性突触功能的细胞粘附突触后蛋白,并且显示脊髓神经元的兴奋性突触输入增加,以及突触增强诱导阈值降低。对eIF4E的药理学抑制或神经连接蛋白1水平的基因降低可使增加的兴奋性突触活动恢复正常,并逆转机械性超敏反应。因此,mTOR下游的4E-BP1的翻译控制影响脊髓中神经连接蛋白1的表达和兴奋性突触传递,从而导致机械性伤害感受增强。