Mela Flora, Marti Matteo, Ulazzi Linda, Vaccari Elvis, Zucchini Silvia, Trapella Claudio, Salvadori Severo, Beani Lorenzo, Bianchi Clementina, Morari Michele
Department of Experimental and Clinical Medicine, University of Ferrara, via Fossato di Mortara 17-19, 44100 Ferrara, Italy.
Eur J Neurosci. 2004 Mar;19(5):1317-24. doi: 10.1111/j.1460-9568.2004.03220.x.
A synaptosomal preparation was employed to pharmacologically characterize the role of presynaptic nociceptin/orphanin FQ (N/OFQ) receptors (NOP receptors) in the regulation of 5-hydroxytryptamine release in the Swiss mouse neocortex. In the present study, the NOP receptor ligands N/OFQ, Ac-RYYRWK-NH(2) and [Phe(1)psi(CH(2)-NH)Gly(2)]N/OFQ(1-13)-NH(2) inhibited the K(+)-induced [(3)H]-5-HT overflow with similar maximal effects ( approximately -35%) but different potencies (pEC(50) of 8.56, 8.35 and 7.23, respectively). The novel agonist [Arg(14),Lys(15)]N/OFQ also inhibited [(3)H]-5-HT overflow, but the concentration-response curve was biphasic and the efficacy higher ( approximately -45%). Receptor selectivity of NOP receptor agonists was demonstrated by showing that synaptosomes from NOP receptor knockout mice were unresponsive to N/OFQ, [Arg(14),Lys(15)]N/OFQ and [Phe(1)psi(CH(2)-NH)Gly(2)]N/OFQ(1-13)-NH(2) but maintained full responsiveness to endomorphin-1. Moreover, the inhibitory effect of N/OFQ was prevented by peptide ([Nphe(1)]N/OFQ(1-13)-NH(2) and UFP-101) and nonpeptide (J-113397 and JTC-801) NOP receptor selective antagonists. Desensitization occurred under perfusion with high (3 and 10 microm) N/OFQ concentrations. This phenomenon was prevented by the protein kinase C inhibitor, bisindolylmaleimide. Moreover, N/OFQ-induced desensitization did not affect mu opioid receptor responsiveness. Finally, it was observed in a similar preparation of rat cerebrocortical synaptosomes, although it was induced by higher N/OFQ concentrations than that used in the mouse. Together, these findings indicate that presynaptic NOP receptors inhibit 5-hydroxytryptamine release in the mouse neocortex. Based on present and previous studies, we conclude that NOP receptors in the mouse are subtly different from the homologous receptor population in the rat, strengthening the view that there exist species differences in the pharmacology of central NOP receptors.
采用突触体标本从药理学角度研究突触前痛敏肽/孤啡肽FQ(N/OFQ)受体(NOP受体)在调节瑞士小鼠新皮质中5-羟色胺释放方面的作用。在本研究中,NOP受体配体N/OFQ、Ac-RYYRWK-NH₂和[Phe¹ψ(CH₂-NH)Gly²]N/OFQ(1-13)-NH₂抑制K⁺诱导的[³H]-5-羟色胺溢出,其最大效应相似(约-35%),但效价不同(pEC₅₀分别为8.56、8.35和7.23)。新型激动剂[Arg¹⁴,Lys¹⁵]N/OFQ也抑制[³H]-5-羟色胺溢出,但其浓度-反应曲线呈双相,且效能更高(约-45%)。通过证明来自NOP受体基因敲除小鼠的突触体对N/OFQ、[Arg¹⁴,Lys¹⁵]N/OFQ和[Phe¹ψ(CH₂-NH)Gly²]N/OFQ(1-13)-NH₂无反应,但对脑啡肽-1仍保持完全反应性,证实了NOP受体激动剂的受体选择性。此外,N/OFQ的抑制作用可被肽类([Nphe¹]N/OFQ(1-13)-NH₂和UFP-101)和非肽类(J-113397和JTC-801)NOP受体选择性拮抗剂阻断。在高浓度(3和10 μmol)N/OFQ灌注下会发生脱敏现象。该现象可被蛋白激酶C抑制剂双吲哚马来酰胺阻止。此外,N/OFQ诱导的脱敏不影响μ阿片受体的反应性。最后,在大鼠脑皮质突触体的类似标本中也观察到了这种现象,尽管诱导脱敏所需的N/OFQ浓度高于小鼠。总之,这些发现表明突触前NOP受体抑制小鼠新皮质中5-羟色胺的释放。基于目前和先前的研究,我们得出结论,小鼠中的NOP受体与大鼠中的同源受体群体存在细微差异,这进一步支持了中枢NOP受体药理学存在物种差异的观点。