化学
黑素皮质素
拟肽
肽
硫醚
亲核芳香族取代
组合化学
立体化学
结合
肽合成
环肽
选择性
苄胺
受体
亲核取代
生物化学
有机化学
数学分析
数学
催化作用
作者
Wenxiao K. Yue,Tianxia Zhang,Rekha Shandre Mugan,Νicholas Barlow,David K. Chalmers,Colin W. Pouton,Philip E. Thompson
标识
DOI:10.1021/acs.jmedchem.2c01587
摘要
While a range of strategies exist to accomplish peptide macrocyclization, they are frequently limited by the need for orthogonal protection or provide little opportunity for structural diversification. We have evaluated an efficient macrocyclization method that employs nucleophilic aromatic substitution (SNAr) to create thioether macrocycles. This versatile macrocyclization, orthogonal to conventional peptide synthesis, can be performed in solution on unprotected peptidomimetics or on resin-bound peptides with side-chain protection in place. We show that the electron-withdrawing groups present in the products can be further utilized in subsequent orthogonal reactions to alter the peptide properties or to add prosthetic groups. The macrocyclization strategy was applied to the design of melanocortin ligands, generating a library of potent melanocortin agonists that exhibit distinct subtype selectivity.
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