Maletínská Lenka, Tichá Anežka, Nagelová Veronika, Spolcová Andrea, Blechová Miroslava, Elbert Tomáš, Zelezná Blanka
Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Flemingovo nám. 2, 166 10 Prague 6, Czech Republic.
Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Flemingovo nám. 2, 166 10 Prague 6, Czech Republic.
Brain Res. 2013 Mar 1;1498:33-40. doi: 10.1016/j.brainres.2012.12.037. Epub 2013 Jan 3.
Neuropeptide FF (NPFF) belongs to the RF-amide family of peptides bearing the identical C-terminal amino acid sequence (R-F-NH2). In addition to NPFF, prolactin-releasing peptide (PrRP), another RF-amide, binds to NPFF receptors with high affinity. A selective antagonist of PrRP has not yet been identified, but a selective antagonist of NPFF, 1-adamantanecarbonyl-RF-NH2 (RF9), was recently reported to antagonize the hyperalgesic effect of NPFF after central administration to mice. In the present study, RF9 competed with NPFF analog D-Y-L-(N-Me)-F-Q-P-Q-R-F-NH2 (1DMe) in binding to CHO-K1 cell membranes transfected with the human NPFF2 receptor. In rat pituitary RC-4B/C cells, where the expression of the NPFF2 receptor was proved by immunodetection, RF9 did not reverse the phosphorylation of MAPK/ERK1/2 induced by [Tyr(1)]NPFF. In vivo experiments with fasted mice confirmed that centrally injected [Tyr(1)]NPFF significantly lowered food intake. However, RF9, a putative NPFF2 antagonist, did not reverse the anorectic effect of [Tyr(1)]NPFF. Paradoxically, RF9 itself exhibited an anorectic effect in fasted mice not only after intracerebroventricular but also after subcutaneous administration. This finding casts doubt on claims that RF9 is an NPFF antagonist.
神经肽FF(NPFF)属于具有相同C末端氨基酸序列(R-F-NH2)的RF-酰胺肽家族。除NPFF外,另一种RF-酰胺——催乳素释放肽(PrRP),能以高亲和力与NPFF受体结合。目前尚未鉴定出PrRP的选择性拮抗剂,但最近有报道称NPFF的选择性拮抗剂1-金刚烷羰基-RF-NH2(RF9)在对小鼠进行中枢给药后可拮抗NPFF的痛觉过敏作用。在本研究中,RF9与NPFF类似物D-Y-L-(N-Me)-F-Q-P-Q-R-F-NH2(1DMe)竞争结合转染了人NPFF2受体的CHO-K1细胞膜。在大鼠垂体RC-4B/C细胞中,通过免疫检测证实了NPFF2受体的表达,RF9并未逆转由[Tyr(1)]NPFF诱导的MAPK/ERK1/2磷酸化。对禁食小鼠进行的体内实验证实,中枢注射[Tyr(1)]NPFF可显著降低食物摄入量。然而,作为一种假定的NPFF2拮抗剂,RF9并未逆转[Tyr(1)]NPFF的厌食作用。矛盾的是,RF9本身在禁食小鼠中不仅在脑室内给药后,而且在皮下给药后均表现出厌食作用。这一发现令人怀疑RF9是NPFF拮抗剂的说法。