Vosbein Pernille, Vergara Paula Paredes, Huang Danny T, Thomson Andrew R
School of Chemistry, University of Glasgow Glasgow G12 8QQ UK
Cancer Research UK Scotland Institute Garscube Estate, Switchback Road Glasgow G61 1BD UK.
Chem Sci. 2024 Sep 10;15(38):15776-82. doi: 10.1039/d4sc04204b.
Recognition of ubiquitin (Ub) is often mediated by small Ub binding domains such as the Ubiquitin Interacting Motif (UIM). Most Ub binding events are low affinity interactions, and designing stronger binders for Ub can be challenging. We here report the design of a short crosslinked coiled coil (CC) which is conformationally and chemically stable, and which can act as a scaffold to present the key binding residues from known UIM sequences. Doing so gives rise to a hybrid CC peptide that reconciles the important features of both UIM and CC sequences. We show by fluorescence polarization assays that this crosslinked 'CC-UIM' peptide exhibits enhanced binding to Ub compared to the original UIM sequence. Furthermore, we report a crystal structure of this peptide in complex with Ub. These studies show that preorganization of a small number of important binding residues onto a stable helical scaffold can be a successful strategy for binder design.
泛素(Ub)的识别通常由小的Ub结合结构域介导,如泛素相互作用基序(UIM)。大多数Ub结合事件都是低亲和力相互作用,设计与Ub结合更强的结合剂可能具有挑战性。我们在此报告了一种短交联卷曲螺旋(CC)的设计,它在构象和化学上都很稳定,并且可以作为一个支架来呈现已知UIM序列中的关键结合残基。这样做产生了一种混合CC肽,它融合了UIM和CC序列的重要特征。我们通过荧光偏振分析表明,与原始UIM序列相比,这种交联的“CC-UIM”肽与Ub的结合增强。此外,我们报告了该肽与Ub复合物的晶体结构。这些研究表明,将少数重要的结合残基预先组织到一个稳定的螺旋支架上可能是一种成功的结合剂设计策略。