Liu Q, Guan X M, Martin W J, McDonald T P, Clements M K, Jiang Q, Zeng Z, Jacobson M, Williams D L, Yu H, Bomford D, Figueroa D, Mallee J, Wang R, Evans J, Gould R, Austin C P
Department of Pharmacology, Merck Research Laboratories, West Point, Pennsylvania 19486, USA.
J Biol Chem. 2001 Oct 5;276(40):36961-9. doi: 10.1074/jbc.M105308200. Epub 2001 Jul 31.
The two mammalian neuropeptides NPFF and NPAF have been shown to have important roles in nociception, anxiety, learning and memory, and cardiovascular reflex. Two receptors (FF1 and FF2) have been molecularly identified for NPFF and NPAF. We have now characterized a novel gene designated NPVF that encodes two neuropeptides highly similar to NPFF. NPVF mRNA was detected specifically in a region between the dorsomedial and ventromedial hypothalamic nuclei. NPVF-derived peptides displayed higher affinity for FF1 than NPFF-derived peptides, but showed poor agonist activity for FF2. Following intracerebral ventricular administration, a NPVF-derived peptide blocked morphine-induced analgesia more potently than NPFF in both acute and inflammatory models of pain. In situ hybridization analysis revealed distinct expression patterns of FF1 and FF2 in the rat central nervous system. FF1 was broadly distributed, with the highest levels found in specific regions of the limbic system and the brainstem where NPVF-producing neurons were shown to project. FF2, in contrast, was mostly expressed in the spinal cord and some regions of the thalamus. These results indicate that the endogenous ligands for FF1 and FF2 are NPVF- and NPFF-derived peptides, respectively, and suggest that the NPVF/FF1 system may be an important part of endogenous anti-opioid mechanism.
两种哺乳动物神经肽NPFF和NPAF已被证明在痛觉、焦虑、学习和记忆以及心血管反射中发挥重要作用。已从分子水平鉴定出NPFF和NPAF的两种受体(FF1和FF2)。我们现已鉴定出一个名为NPVF的新基因,它编码两种与NPFF高度相似的神经肽。NPVF mRNA在背内侧和腹内侧下丘脑核之间的区域中特异性检测到。NPVF衍生的肽对FF1的亲和力高于NPFF衍生的肽,但对FF2的激动剂活性较差。在脑室内给药后,在急性和炎性疼痛模型中,NPVF衍生的肽比NPFF更有效地阻断吗啡诱导的镇痛作用。原位杂交分析揭示了FF1和FF2在大鼠中枢神经系统中的不同表达模式。FF1分布广泛,在边缘系统和脑干的特定区域中含量最高,而产生NPVF的神经元显示投射到这些区域。相比之下,FF2主要在脊髓和丘脑的一些区域表达。这些结果表明,FF1和FF2的内源性配体分别是NPVF和NPFF衍生的肽,并提示NPVF/FF1系统可能是内源性抗阿片类药物机制的重要组成部分。