Barrett Susanna E, Yin Song, Jordan Peter, Brunson John K, Gordon-Nunez Jessica, Costa Machado da Cruz Gabriella, Rosario Christopher, Okada Bethany K, Anderson Kelsey, Pires Thomas A, Wang Ruoyang, Shukla Diwakar, Burk Mark J, Mitchell Douglas A
Department of Chemistry, University of Illinois Urbana-Champaign, Urbana, IL, USA.
Carl R. Woese Institute for Genomic Biology, University of Illinois Urbana-Champaign, Urbana, IL, USA.
Nat Chem Biol. 2025 Mar;21(3):412-419. doi: 10.1038/s41589-024-01727-w. Epub 2024 Sep 11.
Lasso peptides are a diverse class of naturally occurring, highly stable molecules kinetically trapped in a distinctive [1]rotaxane conformation. How the ATP-dependent lasso cyclase constrains a relatively unstructured substrate peptide into a low entropy product has remained a mystery owing to poor enzyme stability and activity in vitro. In this study, we combined substrate tolerance data with structural predictions, bioinformatic analysis, molecular dynamics simulations and mutational scanning to construct a model for the three-dimensional orientation of the substrate peptide in the lasso cyclase active site. Predicted peptide cyclase molecular contacts were validated by rationally engineering multiple, phylogenetically diverse lasso cyclases to accept substrates rejected by the wild-type enzymes. Finally, we demonstrate the utility of lasso cyclase engineering by robustly producing previously inaccessible variants that tightly bind to integrin αvβ8, which is a primary activator of transforming growth factor β and, thus, an important anti-cancer target.
套索肽是一类多样的天然存在的、高度稳定的分子,在动力学上被困于独特的轮烷构象中。由于体外酶稳定性和活性较差,依赖ATP的套索环化酶如何将相对无结构的底物肽约束成低熵产物一直是个谜。在本研究中,我们将底物耐受性数据与结构预测、生物信息学分析、分子动力学模拟和突变扫描相结合,构建了底物肽在套索环化酶活性位点三维取向的模型。通过合理改造多种系统发育不同的套索环化酶以接受野生型酶拒绝的底物,验证了预测的肽环化酶分子接触。最后,我们通过稳健地产生以前无法获得的变体来证明套索环化酶工程的实用性,这些变体与整合素αvβ8紧密结合,整合素αvβ8是转化生长因子β的主要激活剂,因此是一个重要的抗癌靶点。