Sable Rushikesh, Durek Thomas, Taneja Veena, Craik David J, Pallerla Sandeep, Gauthier Ted, Jois Seetharama
Basic Pharmaceutical Sciences, School of Pharmacy, University of Louisiana at Monroe , Monroe, Louisiana 71201, United States.
The University of Queensland, Institute for Molecular Bioscience , Brisbane, Queensland 4072, Australia.
ACS Chem Biol. 2016 Aug 19;11(8):2366-74. doi: 10.1021/acschembio.6b00486. Epub 2016 Jul 1.
The interaction between the cell-cell adhesion proteins CD2 and CD58 plays a crucial role in lymphocyte recruitment to inflammatory sites, and inhibitors of this interaction have potential as immunomodulatory drugs in autoimmune diseases. Peptides from the CD2 adhesion domain were designed to inhibit CD2:CD58 interactions. To improve the stability of the peptides, β-sheet epitopes from the CD2 region implicated in CD58 recognition were grafted into the cyclic peptide frameworks of sunflower trypsin inhibitor and rhesus theta defensin. The designed multicyclic peptides were evaluated for their ability to modulate cell-cell interactions in three different cell adhesion assays, with one candidate, SFTI-a, showing potent activity in the nanomolar range (IC50: 51 nM). This peptide also suppresses the immune responses in T cells obtained from mice that exhibit the autoimmune disease rheumatoid arthritis. SFTI-a was resistant to thermal denaturation, as judged by circular dichroism spectroscopy and mass spectrometry, and had a half-life of ∼24 h in human serum. Binding of this peptide to CD58 was predicted by molecular docking studies and experimentally confirmed by surface plasmon resonance experiments. Our results suggest that cyclic peptides from natural sources are promising scaffolds for modulating protein-protein interactions that are typically difficult to target with small-molecule compounds.
细胞间粘附蛋白CD2和CD58之间的相互作用在淋巴细胞募集到炎症部位的过程中起着关键作用,这种相互作用的抑制剂有望成为自身免疫性疾病中的免疫调节药物。设计了来自CD2粘附结构域的肽以抑制CD2:CD58相互作用。为提高肽的稳定性,将CD2区域中与CD58识别有关的β-折叠表位嫁接到向日葵胰蛋白酶抑制剂和恒河猴θ防御素的环肽框架中。在三种不同的细胞粘附试验中评估了设计的多环肽调节细胞间相互作用的能力,其中一种候选物SFTI-a在纳摩尔范围内显示出强效活性(IC50:51 nM)。该肽还抑制了从患有自身免疫性疾病类风湿性关节炎的小鼠获得的T细胞中的免疫反应。通过圆二色光谱和质谱判断,SFTI-a对热变性具有抗性,并且在人血清中的半衰期约为24小时。通过分子对接研究预测了该肽与CD58的结合,并通过表面等离子体共振实验进行了实验证实。我们的结果表明,天然来源的环肽是调节蛋白质-蛋白质相互作用的有前途的支架,而小分子化合物通常难以靶向这些相互作用。