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细胞骨架调节蛋白-2 通过激活脊髓中的 ADP 核糖基化因子 6 介导 I 组代谢型谷氨酸受体依赖性机械性痛觉过敏。

Cytohesin-2 mediates group I metabotropic glutamate receptor-dependent mechanical allodynia through the activation of ADP ribosylation factor 6 in the spinal cord.

机构信息

Department of Anatomy, Kitasato University School of Medicine, Sagamihara, Kanagawa, 252-0374, Japan; Department of Anesthesiology, Kitasato University School of Medicine, Sagamihara, Kanagawa, 252-0374, Japan.

Department of Anatomy, Kitasato University School of Medicine, Sagamihara, Kanagawa, 252-0374, Japan.

出版信息

Neurobiol Dis. 2021 Nov;159:105466. doi: 10.1016/j.nbd.2021.105466. Epub 2021 Aug 12.

Abstract

Group I metabotropic glutamate receptors (mGluRs), mGluR1 and mGluR5, in the spinal cord are implicated in nociceptive transmission and plasticity through G protein-mediated second messenger cascades leading to the activation of various protein kinases such as extracellular signal-regulated kinase (ERK). In this study, we demonstrated that cytohesin-2, a guanine nucleotide exchange factor for ADP ribosylation factors (Arfs), is abundantly expressed in subsets of excitatory interneurons and projection neurons in the superficial dorsal horn. Cytohesin-2 is enriched in the perisynapse on the postsynaptic membrane of dorsal horn neurons and forms a protein complex with mGluR5 in the spinal cord. Central nervous system-specific cytohesin-2 conditional knockout mice exhibited reduced mechanical allodynia in inflammatory and neuropathic pain models. Pharmacological blockade of cytohesin catalytic activity with SecinH3 similarly reduced mechanical allodynia and inhibited the spinal activation of Arf6, but not Arf1, in both pain models. Furthermore, cytohesin-2 conditional knockout mice exhibited reduced mechanical allodynia and ERK1/2 activation following the pharmacological activation of spinal mGluR1/5 with 3,5-dihydroxylphenylglycine (DHPG). The present study suggests that cytothesin-2 is functionally associated with mGluR5 during the development of mechanical allodynia through the activation of Arf6 in spinal dorsal horn neurons.

摘要

I 型代谢型谷氨酸受体(mGluRs),mGluR1 和 mGluR5,在脊髓中通过 G 蛋白介导的第二信使级联反应参与痛觉传递和可塑性,导致各种蛋白激酶的激活,如细胞外信号调节激酶(ERK)。在这项研究中,我们证明了胞质素-2,一种 ADP 核糖基化因子(Arfs)的鸟嘌呤核苷酸交换因子,在脊髓浅层背角的兴奋性中间神经元和投射神经元亚群中大量表达。胞质素-2在背角神经元突触后膜的突触周富集,并与脊髓中的 mGluR5 形成蛋白复合物。中枢神经系统特异性胞质素-2条件敲除小鼠在炎症和神经病理性疼痛模型中表现出机械性痛觉过敏减轻。用 SecinH3 药理学阻断胞质素催化活性同样减轻了机械性痛觉过敏,并抑制了两种疼痛模型中 Arf6 的脊髓激活,但不抑制 Arf1。此外,在脊髓 mGluR1/5 用 3,5-二羟基苯甘氨酸(DHPG)药理学激活后,胞质素-2 条件敲除小鼠表现出机械性痛觉过敏和 ERK1/2 激活减少。本研究表明,在机械性痛觉过敏的发展过程中,胞质素-2通过脊髓背角神经元中 Arf6 的激活与 mGluR5 具有功能相关性。

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