化学
侧链
立体化学
终端(电信)
阿佩林
药代动力学
受体
氨基酸
生物化学
药理学
计算机科学
医学
电信
有机化学
聚合物
作者
Kien Trân,Robin Van Den Hauwe,Xavier Sainsily,Pierre Couvineau,Jérôme Côté,Louise R. Simard,Marco Echevarria,Alexandre Murza,Alexandra Serre,Léa Théroux,Sabrina Saibi,Lounès Haroune,Jean‐Michel Longpré,Olivier Lesur,Mannix Auger‐Messier,Claude Spino,Michel Bouvier,Philippe Sarret,Steven Ballet,Éric Marsault
标识
DOI:10.1021/acs.jmedchem.0c01941
摘要
Side-chain-constrained amino acids are useful tools to modulate the biological properties of peptides. In this study, we applied side-chain constraints to apelin-13 (Ape13) by substituting the Pro12 and Phe13 positions, affecting the binding affinity and signaling profile on the apelin receptor (APJ). The residues 1Nal, Trp, and Aia were found to be beneficial substitutions for Pro12, and the resulting analogues displayed high affinity for APJ (Ki 0.08-0.18 nM vs Ape13 Ki 0.7 nM). Besides, constrained (d-Tic) or α,α-disubstituted residues (Dbzg; d-α-Me-Tyr(OBn)) were favorable for the Phe13 position. Compounds 47 (Pro12-Phe13 replaced by Aia-Phe, Ki 0.08 nM) and 53 (Pro12-Phe13 replaced by 1Nal-Dbzg, Ki 0.08 nM) are the most potent Ape13 analogues activating the Gα12 pathways (53, EC50 Gα12 2.8 nM vs Ape13, EC50 43 nM) known to date, displaying high affinity, resistance to ACE2 cleavage as well as improved pharmacokinetics in vitro (t1/2 5.8-7.3 h in rat plasma) and in vivo.
科研通智能强力驱动
Strongly Powered by AbleSci AI