硫醚
化学
肽
肽合成
固相合成
组合化学
产量(工程)
化学合成
立体化学
生物化学
体外
材料科学
冶金
作者
James Kempson,Rulin Zhao,Joseph Pawluczyk,Bei Wang,Huiping Zhang,Xiaoping Hou,Martin P. Allen,Dauh‐Rurng Wu,Peng Li,Shiuhang Yip,Aaron Smith,Sarah C. Traeger,Stella Huang,Jingfang Cutrone,Subha Mukherjee,Chris Sfouggatakis,Michael A. Poss,Paul M. Scola,Nicholas A. Meanwell,Percy H. Carter,Arvind Mathur
标识
DOI:10.1021/acs.joc.4c00429
摘要
We describe an optimization and scale-up of the 45-membered macrocyclic thioether peptide BMS-986189 utilizing solid-phase peptide synthesis (SPPS). Improvements to linear peptide isolation, macrocyclization, and peptide purification were demonstrated to increase the throughput and purification of material on scale and enabled the synthesis and purification of >60 g of target peptide. Taken together, not only these improvements resulted in a 28-fold yield increase from the original SPPS approach, but also the generality of this newly developed SPPS purification sequence has found application in the synthesis and purification of other macrocyclic thioether peptides.
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