Jeong Lak Shin, Lee Hyuk Woo, Jacobson Kenneth A, Kim Hea Ok, Shin Dae Hong, Lee Jeong A, Gao Zhan-Guo, Lu Changrui, Duong Heng T, Gunaga Prashantha, Lee Sang Kook, Jin Dong Zhe, Chun Moon Woo, Moon Hyung Ryong
Laboratory of Medicinal Chemistry, College of Pharmacy, Ewha Womans University, Seoul 120-750, Korea.
J Med Chem. 2006 Jan 12;49(1):273-81. doi: 10.1021/jm050595e.
We have established structure-activity relationships of novel 4'-thionucleoside analogues as the A(3) adenosine receptor (AR) agonists. Binding affinity, selectivity toward other AR subtypes, and efficacy in inhibition of adenylate cyclase were studied. From this study, 2-chloro-N(6)-methyl-4'-thioadenosine-5'-methyluronamide (36a) emerged as the most potent and selective agonist at the human A(3) AR. We have also revealed that, similar to 4'-oxoadenosine analogues, at least one hydrogen on the 5'-uronamide moiety was necessary for high-affinity binding at the human A(3) AR, presumably to allow this group to donate a H bond within the binding site. Furthermore, bulky substituents on the 5'-uronamide reduced binding affinity, but in some cases large 5'-uronamide substituents, such as substituted benzyl and 2-phenylethyl groups, maintained moderate affinity with reduced efficacy, leading to A(3) AR partial agonists or antagonists. In several cases for which the corresponding 4'-oxonucleosides have been studied, the 4'-thionucleosides showed higher binding affinity to the A(3) AR.
我们已经建立了新型4'-硫代核苷类似物作为A(3)腺苷受体(AR)激动剂的构效关系。研究了其结合亲和力、对其他AR亚型的选择性以及抑制腺苷酸环化酶的效力。通过这项研究,2-氯-N(6)-甲基-4'-硫代腺苷-5'-甲基脲酰胺(36a)成为对人A(3) AR最有效和选择性最高的激动剂。我们还发现,与4'-氧代腺苷类似物相似,5'-脲酰胺部分上至少有一个氢对于与人A(3) AR的高亲和力结合是必要的,推测是为了使该基团能够在结合位点内提供一个氢键。此外,5'-脲酰胺上的大取代基会降低结合亲和力,但在某些情况下,5'-脲酰胺上的大取代基,如取代苄基和2-苯乙基,会保持适度的亲和力,但效力降低,从而产生A(3) AR部分激动剂或拮抗剂。在已研究相应4'-氧代核苷的几种情况下,4'-硫代核苷对A(3) AR显示出更高的结合亲和力。