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Ⅰ型干扰素直接作用于伤害感受器产生痛觉敏化:病毒感染诱导疼痛的意义。

Type I Interferons Act Directly on Nociceptors to Produce Pain Sensitization: Implications for Viral Infection-Induced Pain.

机构信息

School of Behavioral and Brain Sciences and Center for Advanced Pain Studies, University of Texas at Dallas, Dallas, Texas, 75080.

Department of Physiology and Pharmacology, Center for Basic Sciences, Autonomous University of Aguascalientes, Aguascalientes, Mexico, 20130.

出版信息

J Neurosci. 2020 Apr 29;40(18):3517-3532. doi: 10.1523/JNEUROSCI.3055-19.2020. Epub 2020 Apr 3.

Abstract

One of the first signs of viral infection is body-wide aches and pain. Although this type of pain usually subsides, at the extreme, viral infections can induce painful neuropathies that can last for decades. Neither of these types of pain sensitization is well understood. A key part of the response to viral infection is production of interferons (IFNs), which then activate their specific receptors (IFNRs) resulting in downstream activation of cellular signaling and a variety of physiological responses. We sought to understand how type I IFNs (IFN-α and IFN-β) might act directly on nociceptors in the dorsal root ganglion (DRG) to cause pain sensitization. We demonstrate that type I IFNRs are expressed in small/medium DRG neurons and that their activation produces neuronal hyper-excitability and mechanical pain in mice. Type I IFNs stimulate JAK/STAT signaling in DRG neurons but this does not apparently result in PKR-eIF2α activation that normally induces an anti-viral response by limiting mRNA translation. Rather, type I IFNs stimulate MNK-mediated eIF4E phosphorylation in DRG neurons to promote pain hypersensitivity. Endogenous release of type I IFNs with the double-stranded RNA mimetic poly(I:C) likewise produces pain hypersensitivity that is blunted in mice lacking MNK-eIF4E signaling. Our findings reveal mechanisms through which type I IFNs cause nociceptor sensitization with implications for understanding how viral infections promote pain and can lead to neuropathies. It is increasingly understood that pathogens interact with nociceptors to alert organisms to infection as well as to mount early host defenses. Although specific mechanisms have been discovered for diverse bacterial and fungal pathogens, mechanisms engaged by viruses have remained elusive. Here we show that type I interferons, one of the first mediators produced by viral infection, act directly on nociceptors to produce pain sensitization. Type I interferons act via a specific signaling pathway (MNK-eIF4E signaling), which is known to produce nociceptor sensitization in inflammatory and neuropathic pain conditions. Our work reveals a mechanism through which viral infections cause heightened pain sensitivity.

摘要

病毒感染的最初迹象之一是全身疼痛。虽然这种疼痛通常会减轻,但在极端情况下,病毒感染会引起疼痛性神经病,这种疼痛可能会持续数十年。这两种类型的疼痛敏化都没有得到很好的理解。病毒感染反应的一个关键部分是产生干扰素 (IFN),然后激活其特定受体 (IFNR),从而导致细胞信号的下游激活和各种生理反应。我们试图了解 I 型干扰素 (IFN-α 和 IFN-β) 如何直接作用于背根神经节 (DRG) 中的伤害感受器,导致疼痛敏化。我们证明 I 型 IFNR 在小/中 DRG 神经元中表达,其激活可导致小鼠神经元过度兴奋和机械性疼痛。I 型 IFNs 刺激 DRG 神经元中的 JAK/STAT 信号,但这似乎不会导致 PKR-eIF2α 激活,后者通常通过限制 mRNA 翻译来诱导抗病毒反应。相反,I 型 IFNs 刺激 DRG 神经元中的 MNK 介导的 eIF4E 磷酸化以促进痛觉过敏。双链 RNA 模拟物 poly(I:C) 引起的内源性 I 型 IFN 释放同样会导致痛觉过敏,而在缺乏 MNK-eIF4E 信号的小鼠中,这种过敏会减弱。我们的发现揭示了 I 型 IFNs 引起伤害感受器敏化的机制,这对理解病毒感染如何促进疼痛和导致神经病具有重要意义。越来越多的人认为,病原体与伤害感受器相互作用,以提醒生物体感染,并启动早期宿主防御。尽管已经发现了针对各种细菌和真菌病原体的特定机制,但病毒所涉及的机制仍然难以捉摸。在这里,我们表明,I 型干扰素是病毒感染产生的最早介质之一,直接作用于伤害感受器以产生疼痛敏化。I 型干扰素通过特定的信号通路 (MNK-eIF4E 信号) 起作用,该信号通路已知在炎症性和神经性疼痛情况下会产生伤害感受器敏化。我们的工作揭示了病毒感染导致疼痛敏感性增加的机制。

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