Mann Samuel I, Lin Zhi, Tan Sophia K, Zhu Jiaqi, Widel Zachary X W, Bakanas Ian, Mansergh Jarrett P, Liu Rui, Kelly Mark J S, Wu Yibing, Wells James A, Therien Michael J, DeGrado William F
Department of Pharmaceutical Chemistry, University of California at San Francisco, San Francisco, California 94158-9001, United States.
The Cardiovascular Research Institute, University of California at San Francisco, San Francisco, California 94158-9001, United States.
J Am Chem Soc. 2025 Mar 5;147(9):7849-7858. doi: 10.1021/jacs.4c18151. Epub 2025 Feb 21.
protein design provides a framework to test our understanding of protein function and build proteins with cofactors and functions not found in nature. Here, we report the design of proteins designed to bind powerful photooxidants and the evaluation of the use of these proteins to generate diffusible small-molecule reactive species. Because excited-state dynamics are influenced by the dynamics and hydration of a photooxidant's environment, it was important to not only design a binding site but also to evaluate its dynamic properties. Thus, we used computational design in conjunction with molecular dynamics (MD) simulations to design a protein, designated NBP (DI inding rotein), that held a naphthalenediimide (NDI), a powerful photooxidant, in a programmable molecular environment. Solution NMR confirmed the structure of the complex. We evaluated two NDI cofactors in this protein using ultrafast pump-probe spectroscopy to evaluate light-triggered intra- and intermolecular electron transfer function. Moreover, we demonstrated the utility of this platform to activate multiple molecular probes for protein labeling.
蛋白质设计提供了一个框架,用于检验我们对蛋白质功能的理解,并构建具有自然界中不存在的辅因子和功能的蛋白质。在此,我们报告了旨在结合强光氧化剂的蛋白质设计,以及对使用这些蛋白质生成可扩散小分子反应性物种的评估。由于激发态动力学受光氧化剂环境的动力学和水合作用影响,因此不仅设计结合位点,还评估其动态特性非常重要。因此,我们将计算设计与分子动力学(MD)模拟相结合,设计了一种名为NBP(DI结合蛋白)的蛋白质,该蛋白质在可编程分子环境中容纳萘二亚胺(NDI),一种强的光氧化剂。溶液核磁共振证实了复合物的结构。我们使用超快泵浦-探测光谱法评估了该蛋白质中的两种NDI辅因子,以评估光触发的分子内和分子间电子转移功能。此外,我们展示了该平台用于激活多种用于蛋白质标记的分子探针的效用。