UCIBIO, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Campus Caparica, 2829-516 Caparica, Portugal.
Org Biomol Chem. 2019 Apr 17;17(16):3996-4004. doi: 10.1039/c9ob00564a.
Phosphoprotein-binding domains interact with cognate phosphorylated targets ruling several biological processes. The impairment of such interactions is often associated with disease development, namely cancer. The breast cancer susceptibility gene 1 (BRCA1) C-terminal (BRCT) domain is involved in the control of complex signaling networks of the DNA damage response. The capture and identification of BRCT-binding proteins and peptides may be used for the development of new diagnostic tools for diseases with abnormal phosphorylation profiles. Here we show that designed cyclic β-hairpin structures can be used as peptidomimetics of the BRCT domain, with high selectivity in binding to a target phosphorylated peptide. The amino acid residues and spatial constraints involved in the interaction between a phosphorylated peptide (GK14-P) and the BRCT domain were identified and crafted onto a 14-mer β-hairpin template in silico. Several cyclic peptides models were designed and their binding towards the target peptide and other phosphorylated peptides evaluated through virtual screening. Selected cyclic peptides were then synthesized, purified and characterized. The high affinity and selectivity of the lead cyclic peptide towards the target phosphopeptide was confirmed, and the possibility to capture it using affinity chromatography demonstrated. This work paves the way for the development of cyclic β-hairpin peptidomimetics as a novel class of affinity reagents for the highly selective identification and capture of target molecules.
磷酸化蛋白结合域与同源磷酸化靶标相互作用,调控多种生物学过程。这些相互作用的损伤常与疾病发展相关,尤其是癌症。乳腺癌易感基因 1(BRCA1)C 端(BRCT)域参与 DNA 损伤反应的复杂信号网络的调控。BRCT 结合蛋白和肽段的捕获和鉴定可用于开发具有异常磷酸化谱的疾病的新型诊断工具。在这里,我们展示了设计的环状 β-发夹结构可用作 BRCT 域的肽模拟物,对靶磷酸化肽具有高选择性结合。通过计算机模拟确定了参与磷酸化肽(GK14-P)与 BRCT 域相互作用的氨基酸残基和空间限制,并将其构建到 14 -mer β-发夹模板上。设计了多个环状肽模型,并通过虚拟筛选评估它们与靶肽和其他磷酸化肽的结合。然后合成、纯化和表征了选定的环状肽。确认了先导环状肽对靶磷酸肽的高亲和力和选择性,并证明了使用亲和层析捕获它的可能性。这项工作为环状 β-发夹肽模拟物的开发铺平了道路,可作为一类新型的亲和试剂,用于高度选择性地识别和捕获靶分子。