Ferracane Michael J, Brice-Tutt Ariana C, Coleman Jeremy S, Simpson Grant G, Wilson Lisa L, Eans Shainnel O, Stacy Heather M, Murray Thomas F, McLaughlin Jay P, Aldrich Jane V
Department of Medicinal Chemistry, College of Pharmacy, University of Florida, Gainesville, Florida 32610, United States.
Department of Chemistry, University of Redlands, Redlands, California 92373, United States.
ACS Chem Neurosci. 2020 May 6;11(9):1324-1336. doi: 10.1021/acschemneuro.0c00086. Epub 2020 Apr 21.
Substance abuse remains a serious public health crisis, affecting millions of people worldwide. Macrocyclic tetrapeptides like CJ-15,208 and [d-Trp]CJ-15,208 demonstrate opioid activity shown to attenuate the rewarding effects of cocaine in conditioned place preference assays in mice, making them promising lead compounds for treating substance abuse. In the present study, we report the rational design, synthesis, conformational analysis, and continued pharmacological evaluation of the novel macrocyclic tetrapeptide [Pro-Sar-Phe-d-Phe] to further explore this unique molecular scaffold. This peptide was rationally designed based on X-ray and NMR structures of related macrocyclic tetrapeptides. Following synthesis, its solution-phase conformations were determined by NMR and molecular modeling. The peptide adopted multiple conformations in polar solvents, but a single conformation in chloroform that is stabilized by intramolecular hydrogen bonding. The peptide is orally bioavailable, producing antinociception and antagonism of kappa opioid receptor (KOR) stimulation following oral administration in a mouse 55 °C warm-water tail-withdrawal assay. Notably, [Pro-Sar-Phe-d-Phe] blocked both stress- and drug-induced reinstatement of cocaine and morphine conditioned place preference in mice following oral administration, and displayed a decreased side-effect profile compared to morphine. Thus, [Pro-Sar-Phe-d-Phe] is a promising lead compound for the treatment of substance abuse.
药物滥用仍然是一个严重的公共卫生危机,影响着全球数百万人。大环四肽如CJ-15,208和[d-Trp]CJ-15,208表现出阿片样物质活性,在小鼠条件性位置偏爱试验中显示可减弱可卡因的奖赏效应,使其成为治疗药物滥用的有前景的先导化合物。在本研究中,我们报告了新型大环四肽[Pro-Sar-Phe-d-Phe]的合理设计、合成、构象分析及持续的药理学评价,以进一步探索这种独特的分子支架。该肽是基于相关大环四肽的X射线和核磁共振结构进行合理设计的。合成后,通过核磁共振和分子模拟确定其溶液相构象。该肽在极性溶剂中呈现多种构象,但在氯仿中通过分子内氢键稳定为单一构象。该肽具有口服生物利用度,在小鼠55℃温水甩尾试验中口服给药后产生抗伤害感受并拮抗κ阿片受体(KOR)刺激。值得注意的是,[Pro-Sar-Phe-d-Phe]在口服给药后可阻断小鼠中应激和药物诱导的可卡因和吗啡条件性位置偏爱恢复,并且与吗啡相比副作用较小。因此,[Pro-Sar-Phe-d-Phe]是治疗药物滥用的有前景的先导化合物。