Laboratory of Chemical Biology and Peptide Research, Clinical Research Institute of Montreal, 110 Pine Avenue West, Montreal, Quebec, Canada H2W 1R7.
J Med Chem. 2010 Apr 8;53(7):2875-81. doi: 10.1021/jm9019068.
There is evidence to indicate that the Asp residue in the third transmembrane helix (TMH) of opioid receptors forms a salt bridge with the positively charged nitrogen of endogenous and exogenous opioid ligands. To further examine the role of this electrostatic interaction in receptor binding and activation, we synthesized "carba"-analogues of a published fentanyl analogue containing a 3-(guanidinomethyl)-benzyl group in place of the phenyl moiety attached to the ethylamido group (C. Dardonville et al., Bioorg. Med. Chem. 2006, 14, 6570-6580 (1)), in which the piperidine ring nitrogen was replaced with a carbon. As expected, the resulting cis and trans isomers (8a and 8b) showed reduced mu and kappa opioid receptor binding affinities as compared to 1 but, surprisingly, retained opioid full agonist activity with about half the potency of leucine-enkephalin in the guinea pig ileum assay. In conjunction with performed receptor docking studies, these results indicate that the electrostatic interaction of the protonated nitrogen in the piperidine ring of fentanyl analogues with the Asp residue in the third TMH is not a conditio sine qua non for opioid receptor activation.
有证据表明,阿片受体第三跨膜螺旋(TMH)中的 Asp 残基与内源性和外源性阿片配体的带正电荷的氮形成盐桥。为了进一步研究这种静电相互作用在受体结合和激活中的作用,我们合成了一种已发表的芬太尼类似物的“碳杂”类似物,其中 3-(胍基甲基)-苄基取代了连接到乙酰胺基的苯基部分(C. Dardonville 等人,Bioorg. Med. Chem. 2006, 14, 6570-6580(1)),其中哌啶环上的氮被碳取代。正如预期的那样,得到的顺式和反式异构体(8a 和 8b)与 1 相比,对 μ 和 κ 阿片受体的结合亲和力降低,但令人惊讶的是,它们在豚鼠回肠测定中保留了阿片类完全激动剂活性,效力约为亮氨酸脑啡肽的一半。结合进行的受体对接研究,这些结果表明,芬太尼类似物哌啶环中质子化氮与第三 TMH 中 Asp 残基的静电相互作用不是阿片受体激活的必要条件。