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Involvement of Brain-Enriched Guanylate Kinase-Associated Protein (BEGAIN) in Chronic Pain after Peripheral Nerve Injury

机译:周围神经损伤后脑内富含鸟苷酸激酶相关蛋白(BEGAIN)参与慢性疼痛。

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摘要

Maintenance of neuropathic pain caused by peripheral nerve injury crucially depends on the phosphorylation of GluN2B, a subunit of the N-methyl-d-aspartate (NMDA) receptor, at Tyr1472 (Y1472) and subsequent formation of a postsynaptic density (PSD) complex of superficial spinal dorsal horn neurons. Here we took advantage of comparative proteomic analysis based on isobaric stable isotope tags (iTRAQ) between wild-type and knock-in mice with a mutation of Y1472 to Phe of GluN2B (Y1472F-KI) to search for PSD proteins in the spinal dorsal horn that mediate the signaling downstream of phosphorylated Y1472 GluN2B. Among several candidate proteins, we focused on brain-enriched guanylate kinase-associated protein (BEGAIN), which was specifically up-regulated in wild-type mice after spared nerve injury (SNI). Immunohistochemical analysis using the generated antibody demonstrated that BEGAIN was highly localized at the synapse of inner lamina II in the spinal dorsal horn and that its expression was up-regulated after SNI in wild-type, but not in Y1472F-KI, mice. In addition, alteration of the kinetics of evoked excitatory postsynaptic currents for NMDA but not those for α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors in spinal lamina II was demonstrated by BEGAIN deletion. We demonstrated that mechanical allodynia, a condition of abnormal pain induced by innocuous stimuli, in the SNI model was significantly attenuated in BEGAIN-deficient mice. However, there was no significant difference between naive wild-type and BEGAIN-knockout mice in terms of physiological threshold for mechanical stimuli. These results suggest that BEGAIN was involved in pathological pain transmission through NMDA receptor activation by the phosphorylation of GluN2B at Y1472 in spinal inner lamina II.
机译:周围神经损伤引起的神经性疼痛的维持关键取决于在Tyr1472(Y1472)处N-甲基-d-天冬氨酸(NMDA)受体亚基GluN2B的磷酸化以及随后形成的神经突触后密度(PSD)复合物脊髓背角浅表神经元。在这里,我们利用基于等压稳定同位素标记(iTRAQ)的野生型和敲入小鼠之间的比较蛋白质组学分析,这些小鼠的Y1472突变为GluN2B的Phe(Y1472F-KI),以寻找脊髓背角中的PSD蛋白介导磷酸化的Y1472 GluN2B下游的信号转导。在几种候选蛋白中,我们集中研究了脑富集的鸟苷酸激酶相关蛋白(BEGAIN),该蛋白在神经损伤(SNI)后被野生型小鼠特异性上调。使用产生的抗体的免疫组织化学分析表明,BEGAIN高度定位于脊髓背角内层叶片II的突触中,并且在SNI后在野生型小鼠(而非Y1472F-KI小鼠)中其表达上调。另外,通过BEGAIN缺失证明了NMDA引起的兴奋性突触后突触电流的动力学改变,但脊髓椎板II中的α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体则没有改变。我们证明在BEGAIN缺陷小鼠中,机械性异常性疼痛(一种由无害刺激引起的异常疼痛的状况)在SNI模型中显着减弱。但是,就机械刺激的生理阈值而言,幼稚的野生型和BEGAIN敲除小鼠之间没有显着差异。这些结果表明,BEGAIN参与了脊髓内层II中Y1472处GluN2B的磷酸化,从而通过NMDA受体活化参与病理性疼痛传递。

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