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δ-连环蛋白的棕榈酰化促进感觉神经元中 Na1.6 的驱动蛋白介导的膜运输,从而促进神经病理性疼痛。

Palmitoylation of δ-catenin promotes kinesin-mediated membrane trafficking of Na1.6 in sensory neurons to promote neuropathic pain.

机构信息

Neuroscience Program, Zhongshan School of Medicine, The Fifth Affiliated Hospital of Sun Yat-sen University, Sun Yat-sen University, Guangzhou 510080, China.

Guangdong Province Key Laboratory of Brain Function and Disease, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou 510080, China.

出版信息

Sci Signal. 2018 Mar 27;11(523):eaar4394. doi: 10.1126/scisignal.aar4394.

Abstract

Palmitoylation of δ-catenin is critical to synapse plasticity and memory formation. We found that δ-catenin palmitoylation is also instrumental in the development of neuropathic pain. The abundances of palmitoylated δ-catenin and the palmitoyl acyltransferase DHHC3 were increased in dorsal root ganglion (DRG) sensory neurons in rat models of neuropathic pain. Inhibiting palmitoyl acyltransferases or decreasing δ-catenin abundance in the DRG by intrathecal injection of 2-bromopalmitate or shRNA, respectively, alleviated oxaliplatin or nerve injury-induced neuropathic pain in the rats. The palmitoylation of δ-catenin, which was induced by the inflammatory cytokine TNF-α, facilitated its interaction with the voltage-gated sodium channel Na1.6 and the kinesin motor protein KIF3A, which promoted the trafficking of Na1.6 to the plasma membrane in DRG neurons and contributed to mechanical hypersensitivity and allodynia in rats. These findings suggest that a palmitoylation-mediated KIF3A/δ-catenin/Na1.6 complex enhances the transmission of mechanical and nociceptive signals; thus, blocking this mechanism may be therapeutic in patients with neuropathic pain.

摘要

δ-连环蛋白的棕榈酰化对于突触可塑性和记忆形成至关重要。我们发现 δ-连环蛋白的棕榈酰化对于神经性疼痛的发展也很重要。在神经性疼痛大鼠模型中,背根神经节 (DRG) 感觉神经元中棕榈酰化的 δ-连环蛋白和棕榈酰基转移酶 DHHC3 的丰度增加。鞘内注射 2-溴棕榈酸或 shRNA 分别抑制棕榈酰基转移酶或减少 DRG 中的 δ-连环蛋白含量,可缓解奥沙利铂或神经损伤引起的大鼠神经性疼痛。炎性细胞因子 TNF-α诱导的 δ-连环蛋白棕榈酰化促进了其与电压门控钠离子通道 Na1.6 和驱动蛋白运动蛋白 KIF3A 的相互作用,促进了 Na1.6 在 DRG 神经元中向质膜的转运,并导致大鼠的机械性超敏反应和痛觉过敏。这些发现表明,一种棕榈酰化介导的 KIF3A/δ-连环蛋白/Na1.6 复合物增强了机械和伤害性信号的传递;因此,阻断这种机制可能对神经性疼痛患者具有治疗作用。

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