抑制蛋白质-蛋白质相互作用 (PPI) 是化学生物学和药物发现的主要挑战。α-螺旋介导的 PPI 可能适合使用称为“蛋白质模拟物”的通用化学型进行调节,该化学型可以以模块化方式组装,以重现 PPI 内一个伙伴在螺旋基序上发现的关键侧链的矢量呈现。在这项工作中,证明通过使用 N-烷基化芳族寡酰胺螺旋模拟物库,可以识别在细胞环境中重现其生物物理结合选择性的有效螺旋模拟物。
作者:Frederick Campbell、Jeffrey P. Plante、Thomas A. Edwards、Stuart L. Warriner、Andrew J. Wilson
DOI:10.1039/c001164a
日期:——
Generic approaches for the design and synthesis of small molecule inhibitors of proteinâprotein interactions (PPIs) represent a key objective in modern chemical biology. Within this context, the α-helix mediated PPIs have received considerable attention as targets for inhibition using small molecules, foldamers and proteomimetics. This manuscript describes a novel N-alkylated aromatic oligoamide proteomimetic scaffold and its solid-phase synthesisâthe first time such an approach has been used for proteomimetics. The utility of these scaffolds as proteomimetics is exemplified through the identification of potent μM inhibitors of the p53âhDM2 helix mediated PPIâa key oncogenic target.
Expedient synthesis of benzene tricarboxamide macrocycles derived from p-aminobenzoic acid
作者:Fred Campbell、Colin A. Kilner、Andrew J. Wilson
DOI:10.1016/j.tetlet.2009.12.137
日期:2010.3
The synthesis of macrocycles functionalized at the periphery in a regiospecific fashion is considered challenging. This Letter describes a six-step synthesis of N-alkylated benzene tricarboxamide macrocycles derived from p-aminobenzoic acid via the iterative coupling of Fmoc-protected monomers and cyclization of the resultant linear foldamers.
Selective and Potent Proteomimetic Inhibitors of Intracellular Protein-Protein Interactions
作者:Anna Barnard、Kérya Long、Heather L. Martin、Jennifer A. Miles、Thomas A. Edwards、Darren C. Tomlinson、Andrew Macdonald、Andrew J. Wilson
DOI:10.1002/anie.201410810
日期:2015.3.2
discovery. α‐Helix mediated PPIs may be amenable to modulation using generic chemotypes, termed “proteomimetics”, which can be assembled in a modular manner to reproduce the vectoral presentation of key side chains found on a helical motif from one partner within the PPI. In this work, it is demonstrated that by using a library of N‐alkylated aromatic oligoamide helixmimetics, potent helixmimetics which
抑制蛋白质-蛋白质相互作用 (PPI) 是化学生物学和药物发现的主要挑战。α-螺旋介导的 PPI 可能适合使用称为“蛋白质模拟物”的通用化学型进行调节,该化学型可以以模块化方式组装,以重现 PPI 内一个伙伴在螺旋基序上发现的关键侧链的矢量呈现。在这项工作中,证明通过使用 N-烷基化芳族寡酰胺螺旋模拟物库,可以识别在细胞环境中重现其生物物理结合选择性的有效螺旋模拟物。