Department of Chemistry, The Herbert Wertheim UF Scripps Institute for Biomedical Innovation and Technology, 120 Scripps Way, Jupiter, Florida 33458, United States.
J Am Chem Soc. 2024 May 29;146(21):14633-14644. doi: 10.1021/jacs.4c01920. Epub 2024 May 16.
Macrocyclic peptides (MPs) are a class of compounds that have been shown to be particularly well suited for engaging difficult protein targets. However, their utility is limited by their generally poor cell permeability and bioavailability. Here, we report an efficient solid-phase synthesis of novel MPs by trapping a reversible intramolecular imine linkage with a 2-formyl- or 2-keto-pyridine to create an imidazopyridinium (IP)-linked ring. This chemistry is useful for the creation of macrocycles of different sizes and geometries, including head-to-side and side-to-side chain configurations. Many of the IP-linked MPs exhibit far better passive membrane permeability than expected for "beyond Rule of 5" molecules, in some cases exceeding that of much lower molecular weight, traditional drug molecules. We demonstrate that this chemistry is suitable for the creation of libraries of IP-linked MPs and show that these libraries can be mined for protein ligands.
大环肽(MPs)是一类化合物,已被证明特别适合与难以靶向的蛋白质结合。然而,由于其通常较差的细胞通透性和生物利用度,其应用受到限制。在这里,我们报告了一种通过用 2-醛基或 2-酮吡啶捕获可逆的分子内亚胺键来有效固相合成新型 MPs 的方法,从而形成了咪唑并吡啶鎓(IP)连接环。这种化学方法可用于创建不同大小和几何形状的大环,包括头到侧和侧到侧链构象。许多 IP 连接的 MPs 的被动膜通透性远远优于“超越 5 规则”分子的预期,在某些情况下甚至超过了低得多分子量的传统药物分子。我们证明了这种化学方法适用于创建 IP 连接的 MPs 文库,并表明可以从这些文库中筛选出蛋白质配体。