Foister Shane, Taylor Laurie L, Feng Jin-Jye, Chen Wen-Long, Lin Atsui, Cheng Fong-Chi, Smith Amos B, Hirschmann Ralph
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Org Lett. 2006 Apr 27;8(9):1799-802. doi: 10.1021/ol060278h.
[structure: see text] Cyclic hexapeptides, incorporating a dipeptide unit in place of the disulfide bond found in urotensin, were prepared and screened at the human urotensin receptor. The bridging dipeptide unit was found to influence dramatically the affinity for the urotensin receptor. Alanyl-N-methylalanyl and alanylprolyl dipeptide bridges failed to afford active ligands, while the alanyl-alanyl unit yielded a ligand with submicromolar affinity for the urotensin receptor. Further development led to a hexapeptide agonist with nanomolar affinity (2.8 nM).
[结构:见正文] 制备了环状六肽,其中用二肽单元取代了尾加压素中发现的二硫键,并在人尾加压素受体上进行了筛选。发现桥连二肽单元对尾加压素受体的亲和力有显著影响。丙氨酰-N-甲基丙氨酰和丙氨酰脯氨酰二肽桥未能提供活性配体,而丙氨酰-丙氨酰单元产生了一种对尾加压素受体具有亚微摩尔亲和力的配体。进一步的研发得到了一种具有纳摩尔亲和力(2.8 nM)的六肽激动剂。