Department of Pharmaceutical Chemistry, University of California San Francisco, San Francisco, California 94143, United States.
Cardiovascular Research Institute, University of California San Francisco, San Francisco, California 94143, United States.
J Am Chem Soc. 2024 Sep 11;146(36):25047-25057. doi: 10.1021/jacs.4c07920. Epub 2024 Aug 27.
Proximity-enhanced chemical cross-linking is an invaluable tool for probing protein-protein interactions and enhancing the potency of potential peptide and protein drugs. Here, we extend this approach to covalently stabilize large macromolecular assemblies. We used SuFEx chemistry to covalently stabilize an 18-subunit pore-forming complex, CsgG:CsgF, consisting of nine CsgG membrane protein subunits that noncovalently associate with nine CsgF peptides. Derivatives of the CsgG:CsgF pore have been used for DNA sequencing, which places high demands on the structural stability and homogeneity of the complex. To increase the robustness of the pore, we designed and synthesized derivatives of CsgF-bearing sulfonyl fluorides, which react with CsgG in very high yield to form a covalently stabilized CsgG:CsgF complex. The resulting pores formed highly homogeneous channels when added to artificial membranes. The high yield and rapid reaction rate of the SuFEx reaction prompted molecular dynamics simulations, which revealed that the SOF groups in the initially formed complex are poised for nucleophilic reaction with a targeted Tyr. These results demonstrate the utility of SuFEx chemistry to structurally stabilize very large (here, 280 kDa) assemblies.
邻近增强化学交联是探测蛋白质-蛋白质相互作用并增强潜在肽类和蛋白质药物效力的宝贵工具。在这里,我们将这种方法扩展到共价稳定大的高分子组装体。我们使用 SuFEx 化学共价稳定一个由 18 个亚基组成的形成孔道的复合物,CsgG:CsgF,由九个 CsgG 膜蛋白亚基组成,这些亚基非共价地与九个 CsgF 肽结合。CsgG:CsgF 孔的衍生物已被用于 DNA 测序,这对复合物的结构稳定性和均一性提出了很高的要求。为了增加孔的稳定性,我们设计并合成了带有磺酰氟的 CsgF 衍生物,这些衍生物与 CsgG 以非常高的产率反应,形成共价稳定的 CsgG:CsgF 复合物。当将所得孔添加到人工膜中时,形成了高度均一的通道。SuFEx 反应的高收率和快速反应速率促使进行分子动力学模拟,该模拟揭示了最初形成的复合物中的 SOF 基团准备好与靶向 Tyr 进行亲核反应。这些结果证明了 SuFEx 化学在结构上稳定非常大(此处为 280 kDa)组装体的效用。