Han Young Taek, Kim Kyeojin, Son Dohyun, An Hongchan, Kim Hee, Lee Jeeyeon, Park Hyun-Ju, Lee Jeewoo, Suh Young-Ger
College of Pharmacy, Woosuk University, Wanju 565-701, Republic of Korea.
College of Pharmacy, Seoul National University, 599 Gwanak-ro, Gwanak-gu, Seoul 151-742, Republic of Korea.
Bioorg Med Chem. 2015 Feb 1;23(3):579-87. doi: 10.1016/j.bmc.2014.12.003. Epub 2014 Dec 8.
Through the fine tuning of the activity-sensitive aminoalkoxy moiety of 4,6-bisphenyl-2-(3-alkoxyanilino)pyrimidine as a novel inhibitor of the receptor for advanced glycation end products (RAGE), the tertiary amine was elucidated as an essential part associated with RAGE inhibition. On the basis of this finding, a 3-(N,N-dimethylamino)pyrrolidine analog 12o was identified as a therapeutically useful RAGE inhibitor with improved activity and solubility. Molecular modeling studies predicted that the improved inhibitory activity is induced by additional hydrogen bonds between the nitrogen atom of the pyrrolidine ring and Arg48 and by an interaction between the dimethylamino-substituent of the pyrrolidine moiety and a relatively hydrophobic groove in the RAGE binding site.
通过对4,6-双苯基-2-(3-烷氧基苯胺基)嘧啶的活性敏感氨基烷氧基部分进行微调,作为晚期糖基化终产物受体(RAGE)的新型抑制剂,叔胺被阐明为与RAGE抑制相关的关键部分。基于这一发现,3-(N,N-二甲基氨基)吡咯烷类似物12o被鉴定为具有改善活性和溶解性的治疗性有用RAGE抑制剂。分子模拟研究预测,吡咯烷环氮原子与Arg48之间额外的氢键以及吡咯烷部分的二甲基氨基取代基与RAGE结合位点中相对疏水的凹槽之间的相互作用诱导了抑制活性的提高。