Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin, 53706, USA.
National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, New York, 11973, USA.
Angew Chem Int Ed Engl. 2023 Oct 2;62(40):e202308100. doi: 10.1002/anie.202308100. Epub 2023 Aug 29.
Peptide engineering efforts have delivered drugs for diverse human diseases. Side chain alteration is among the most common approaches to designing new peptides for specific applications. The peptide backbone can be modified as well, but this strategy has received relatively little attention. Here we show that new and favorable contacts between a His side chain on a target protein and an aromatic side chain on a synthetic peptide ligand can be engineered by rational and coordinated side chain modification and backbone extension. Side chain modification alone was unsuccessful. Binding measurements, high-resolution structural studies and pharmacological outcomes all support the synergy between backbone and side chain modification in engineered ligands of the parathyroid hormone receptor-1, which is targeted by osteoporosis drugs. These results should motivate other structure-based designs featuring coordinated side chain modification and backbone extension to enhance the engagement of peptide ligands with target proteins.
肽工程技术已经为多种人类疾病提供了药物。侧链修饰是设计特定应用新肽的最常见方法之一。肽骨架也可以进行修饰,但这种策略受到的关注相对较少。在这里,我们展示了通过合理协调的侧链修饰和骨架延伸,可以在目标蛋白上的 His 侧链和合成肽配体上的芳基侧链之间设计新的有利接触。单独的侧链修饰是不成功的。结合测量、高分辨率结构研究和药理结果都支持在甲状旁腺激素受体-1 的工程配体中,侧链修饰和骨架延伸之间的协同作用,甲状旁腺激素受体-1 是骨质疏松症药物的靶点。这些结果应该激励其他基于结构的设计,通过协调的侧链修饰和骨架延伸来增强肽配体与靶蛋白的结合。