Department of Medicinal Chemistry, Tokyo University of Pharmacy and Life Sciences.
Department of Chemistry and Bioscience, Graduate School of Science and Engineering, Kagoshima University.
Chem Pharm Bull (Tokyo). 2024;72(9):831-837. doi: 10.1248/cpb.c24-00430.
Mid-sized cyclic peptides are a promising modality for modern drug discovery. Their larger interaction area coupled with an appropriate secondary structure is more suitable than small molecules for binding to the target protein. In this study, we conducted a structure derivatization of an immunoglobulin G (IgG)-binding peptide (15-IgBP), a β-hairpin-like cyclic peptide with a twisted β-strand and assessed the effect of the secondary structure on IgG-binding activity using circular dichroism (CD) spectra analysis. As a result, derivatization at the Ala5 and Gly9 positions affected the secondary structure of 15-IgBP, in particular the appearance of a small positive peak in the 220-240 nm region characteristic of 15-IgBP in the CD spectrum. Maintaining this peak at a moderate level may be important for the expression of IgG binding activity. We found the small methyl group at Ala5 to be crucial for retaining the preferred secondary structure; we also found Gly9 could be replaced by D-amino acids. By integrating these findings with previous results of the structure-activity relationship, we obtained four potent affinity peptides for IgG binding (K = 4.24-5.85 nM). Furthermore, we found the Gly9 position can be substituted for D-Lys. This is a new potential site for attaching functional units for conjugation with IgG for the preparation of homogeneous antibody-drug conjugates.
中等大小的环肽是现代药物发现的一种有前途的模式。它们较大的相互作用面积加上适当的二级结构,比小分子更适合与靶蛋白结合。在这项研究中,我们对免疫球蛋白 G(IgG)结合肽(15-IgBP)进行了结构衍生化,15-IgBP 是一种具有扭曲 β-链的 β-发夹样环肽,并使用圆二色性(CD)光谱分析评估了二级结构对 IgG 结合活性的影响。结果表明,Ala5 和 Gly9 位置的衍生化影响了 15-IgBP 的二级结构,特别是在 CD 光谱中,15-IgBP 出现了 220-240nm 区域的小正峰。保持该峰处于中等水平可能对 IgG 结合活性的表达很重要。我们发现 Ala5 上的小甲基对于保持优选的二级结构至关重要;我们还发现 Gly9 可以被 D-氨基酸取代。将这些发现与以前的结构-活性关系结果结合起来,我们获得了四种对 IgG 结合具有高亲和力的肽(K=4.24-5.85nM)。此外,我们发现 Gly9 位置可以被 D-Lys 取代。这是一个新的潜在位点,可以用于附着功能单元,与 IgG 缀合,用于制备均一的抗体药物偶联物。