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趋化因子与神经元受体之间的相互作用连接了免疫系统和神经系统。

Crosstalk between chemokines and neuronal receptors bridges immune and nervous systems.

作者信息

Zhang Ning, Oppenheim Joost J

机构信息

Laboratory of Molecular Immunoregulation, Center for Cancer Research, National Cancer Institute at Frederick, Building 560, Room 21-89A, Frederick, MD 21702-1201, USA.

出版信息

J Leukoc Biol. 2005 Dec;78(6):1210-4. doi: 10.1189/jlb.0405224. Epub 2005 Oct 4.

Abstract

Chemokine receptors, a family of Gi protein-coupled receptors responsible for cell migration, are widely expressed by cells of immune and nervous systems. Activation of receptors on the surface of leukocytes, such as opioid, vasoactive intestinal peptide, or adenosine receptors, often has inhibitory effects on chemokine receptors by a mechanism termed heterologous desensitization, resulting in suppression of immune responses. Conversely, activation of chemokine receptors also induces heterologous desensitization of mu-opioid receptors (MOR), a class of key analgesic receptors on neurons. Furthermore, prior exposure of neuronal cells to chemokine treatment enhances the sensitivity of transient receptor potential vanilloid 1 (TRPV1), a heat- and ligand-gated calcium channel, which is critical for sensing of pain. Consequently, during inflammation, activation of chemokine receptors on neurons contributes to hyperalgesia by inhibiting MOR and concomitantly sensitizing TRPV1 via Gi protein-mediated signaling pathways. These observations suggest that the crosstalk between chemokine receptors and neuropeptide membrane receptors serves as a bridge between the immune and nervous systems.

摘要

趋化因子受体是一类负责细胞迁移的G蛋白偶联受体家族,在免疫和神经系统细胞中广泛表达。白细胞表面受体的激活,如阿片类、血管活性肠肽或腺苷受体,通常通过一种称为异源脱敏的机制对趋化因子受体产生抑制作用,从而导致免疫反应受到抑制。相反,趋化因子受体的激活也会诱导神经元上一类关键镇痛受体——μ-阿片受体(MOR)的异源脱敏。此外,神经元细胞预先暴露于趋化因子处理会增强瞬时受体电位香草酸亚型1(TRPV1)的敏感性,TRPV1是一种对疼痛感知至关重要的热和配体门控钙通道。因此,在炎症过程中,神经元上趋化因子受体的激活通过抑制MOR并同时通过G蛋白介导的信号通路使TRPV1敏感化,从而导致痛觉过敏。这些观察结果表明,趋化因子受体与神经肽膜受体之间的相互作用充当了免疫和神经系统之间的桥梁。

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