Fiset Marie-Elaine, Gilbert Caroline, Poubelle Patrice E, Pouliot Marc
Centre de Recherche en Rhumatologie et Immunologie, Faculté de Médecine, Université Laval, 2705 Laurier Boulevard, Office T1-49, Québec, Canada G1V 4G2.
Biochemistry. 2003 Sep 9;42(35):10498-505. doi: 10.1021/bi0300635.
Nociceptin is a neuropeptide sharing sequence homology with classical opioid peptides but with a distinct pharmacological profile. Through activation of its receptor, NociR, nociceptin has been linked with several physiological functions in the central nervous system including memory, locomotion, and processing of pain signals. Recently, peripheral blood neutrophils (PMNs) were demonstrated to express a functional NociR, a result suggesting that additional functions of the neuropeptide remain to be elucidated. The present study investigated the possibility that PMNs may be a source of nociceptin and whether the neuropeptide elicits PMN early responses. We observed the presence of nociceptin in the synovial fluids from arthritic patients, an inflammatory milieu typically containing high numbers of PMNs. In addition, freshly isolated PMNs were found to express and secrete nociceptin following degranulation, identifying these inflammatory cells as a novel source of the neuropeptide. Incubation of PMNs with nociceptin elicited a specific pattern of cellular protein phosphorylation on tyrosine residues in a rapid and transient fashion. Moreover, nociceptin prevented intracellular accumulation of cAMP in fMLP-stimulated PMNs, an effect mimicked by the specific NociR synthetic agonist, Ro 64-6198. Taken together, these results show that nociceptin/NociR is present and functional in human neutrophils, and the results identify a novel dialogue pathway between neural and immune tissues.
痛敏肽是一种神经肽,与经典阿片肽具有序列同源性,但具有独特的药理学特性。通过激活其受体NociR,痛敏肽与中枢神经系统的多种生理功能相关,包括记忆、运动和疼痛信号处理。最近,外周血中性粒细胞(PMNs)被证明表达功能性NociR,这一结果表明该神经肽的其他功能仍有待阐明。本研究调查了PMNs可能是痛敏肽来源的可能性,以及该神经肽是否引发PMNs早期反应。我们观察到关节炎患者滑液中存在痛敏肽,滑液是一种通常含有大量PMNs的炎症环境。此外,发现新鲜分离的PMNs在脱颗粒后表达并分泌痛敏肽,确定这些炎症细胞是该神经肽的新来源。用痛敏肽孵育PMNs以快速且短暂的方式引发细胞蛋白酪氨酸残基磷酸化的特定模式。此外,痛敏肽可防止fMLP刺激的PMNs中cAMP的细胞内积累,这一效应被特异性NociR合成激动剂Ro 64-6198模拟。综上所述,这些结果表明痛敏肽/NociR在人中性粒细胞中存在并发挥作用,这些结果确定了神经组织和免疫组织之间的一种新的对话途径。