Gunduz Ozge, Sipos Ferenc, Spagnolo Barbara, Kocsis László, Magyar Anna, Orosz Gyorgy, Borsodi Anna, Calò Girolamo, Benyhe Sándor
Institute of Biochemistry, Biological Research Center, Hungarian Academy of Sciences, Szeged, Hungary.
Neurosignals. 2006;15(2):91-101. doi: 10.1159/000094743. Epub 2006 Jul 26.
Following the discovery of nociceptin/orphanin FQ (N/OFQ) peptide receptor (NOP) and its endogenous ligand, an extensive search has started to find selective agonists and antagonists targeting this novel receptor-ligand system due to their therapeutic potentials. By the help of the combinatorial chemistry a series of hexapeptides with a general formula of Ac-RYY-R/K-W/I-R/K-NH(2) having high NOP receptor affinity and selectivity were identified. On the basis of this information we developed a number of novel compounds. The detailed structure-activity studies on the partial agonist Ac-RYYRIK-NH(2) are reported in this communication. Besides the modifications on N- and C-terminal, Arg-Cit exchange was performed on the template structure. The novel hexapeptides were analyzed in radioligand binding, functional biochemical [(35)S]GTPgammaS binding assays by using membranes from rat brains and Chinese hamster ovary cells expressing human NOP receptor. The agonist/antagonist properties were also tested on in the mouse vas deferens bioassay. C-terminal modification yielded a high affinity, selective and potent NOP ligand (Ac-RYYRIK-ol) with a partial agonist property. Several analogs of this compound were synthesized. The presence of the positively charged arginine residue at the first position turned out to be crucial for the biological activity of the hexapeptide. The N-terminal modifications with various acyl groups (ClAc, pivaloyl, formyl, benzoyl, mesyl) decreased the affinity of the ligand towards the receptor and the intrinsic activity for stimulating the G-protein activation was also decreased. The structure-activity studies on the hexapeptide derivatives provided some basic information on the structural requirements for receptor binding and activation.
在发现孤啡肽/孤啡肽FQ(N/OFQ)肽受体(NOP)及其内源性配体后,由于其治疗潜力,人们开始广泛寻找针对这种新型受体-配体系统的选择性激动剂和拮抗剂。借助组合化学,鉴定出了一系列通式为Ac-RYY-R/K-W/I-R/K-NH(2)的具有高NOP受体亲和力和选择性的六肽。基于此信息,我们开发了许多新型化合物。本文报道了对部分激动剂Ac-RYYRIK-NH(2)的详细构效关系研究。除了对N端和C端进行修饰外,还对模板结构进行了精氨酸-瓜氨酸交换。通过使用大鼠脑和表达人NOP受体的中国仓鼠卵巢细胞的膜,对新型六肽进行了放射性配体结合、功能性生化[(35)S]GTPγS结合测定分析。还在小鼠输精管生物测定中测试了激动剂/拮抗剂特性。C端修饰产生了一种具有部分激动剂特性的高亲和力、选择性和强效的NOP配体(Ac-RYYRIK-ol)。合成了该化合物的几种类似物。结果表明,六肽第一个位置带正电荷的精氨酸残基对其生物活性至关重要。用各种酰基(氯乙酰基、新戊酰基、甲酰基、苯甲酰基、甲磺酰基)进行的N端修饰降低了配体与受体的亲和力,刺激G蛋白激活的内在活性也降低了。对六肽衍生物的构效关系研究为受体结合和激活的结构要求提供了一些基本信息。