From the Faculty of Medicine, School of Biomedical Sciences, University of Queensland, Brisbane, Queensland 4072, Australia.
the Department of Drug Design and Pharmacology, University of Copenhagen, Universitetsparken 2, 2100 Copenhagen, Denmark, and.
J Biol Chem. 2018 Oct 12;293(41):15765-15776. doi: 10.1074/jbc.RA118.002611. Epub 2018 Aug 21.
The neuropeptide relaxin-3 and its receptor relaxin family peptide receptor-3 (RXFP3) play key roles in modulating behavior such as memory and learning, food intake, and reward seeking. A linear relaxin-3 antagonist (R3 B1-22R) based on a modified and truncated relaxin-3 B-chain was recently developed. R3 B1-22R is unstructured in solution; thus, the binding conformation and determinants of receptor binding are unclear. Here, we have designed, chemically synthesized, and pharmacologically characterized more than 60 analogues of R3 B1-22R to develop an extensive understanding of its structure-activity relationships. We show that the key driver for affinity is the nonnative C-terminal Arg Additional contributors to binding include amino acid residues that are important also for relaxin-3 binding, including Arg, Ile, and Ile Intriguingly, amino acid residues that are not exposed in native relaxin-3, including Phe and Ala, also interact with RXFP3. We show that R3 B1-22R has a propensity to form a helical structure, and modifications that support a helical conformation are functionally well-tolerated, whereas helix breakers such as proline residues disrupt binding. These data suggest that the peptide adopts a helical conformation, like relaxin-3, upon binding to RXFP3, but that its smaller size allows it to penetrate deeper into the orthosteric binding site, creating more extensive contacts with the receptor.
神经肽松弛素-3 及其受体松弛素家族肽受体-3(RXFP3)在调节行为方面发挥着关键作用,如记忆和学习、食物摄入和奖励寻求。最近开发了一种基于修饰和截断的松弛素-3 B 链的线性松弛素-3 拮抗剂(R3 B1-22R)。R3 B1-22R 在溶液中无结构;因此,其结合构象和受体结合的决定因素尚不清楚。在这里,我们设计、化学合成并药理学表征了超过 60 种 R3 B1-22R 的类似物,以深入了解其结构-活性关系。我们表明,亲和力的关键驱动因素是非天然 C 末端精氨酸。此外,对结合很重要的氨基酸残基也包括 Arg、Ile 和 Ile 等,这些残基对于松弛素-3 的结合也很重要。有趣的是,在天然松弛素-3 中未暴露的氨基酸残基,包括 Phe 和 Ala,也与 RXFP3 相互作用。我们表明,R3 B1-22R 具有形成螺旋结构的倾向,并且支持螺旋构象的修饰在功能上是可以很好耐受的,而脯氨酸残基等螺旋破坏剂会破坏结合。这些数据表明,该肽在与 RXFP3 结合时采用与松弛素-3 类似的螺旋构象,但由于其较小的尺寸,它能够更深地渗透到正位结合位点,与受体形成更广泛的接触。