Acevedo-Jake Amanda M, Mylemans Bram, Kay Danielle F, Zhang Peiyu, Korona Boguslawa, Rhys Guto G, Leney Aneika C, Huang Danny T, Edwards Thomas A, Itzhaki Laura, Woolfson Derek N, Wilson Andrew J
School of Chemistry, University of Birmingham, Edgbaston B15 2TT, U.K.
School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.
ACS Chem Biol. 2025 Jun 20;20(6):1309-1318. doi: 10.1021/acschembio.5c00137. Epub 2025 Jun 5.
Self-assembled peptides are promising templates for the design of inhibitors of protein-protein interactions (PPIs) because they can be endowed with affinity- and selectivity-defining amino acids alongside favorable physicochemical properties such as solubility and stability. Here, we describe a tunable coiled-coil scaffold and its interaction with MCL-1, an α-helix-binding antiapoptotic protein and important target in oncology. We explore the role of oligomerization, multivalency, and cooperativity in PPI inhibition. Hot-spot residues from an MCL-1 binding peptide (NOXA-B) are grafted onto the outer surfaces of homo- and heterodimeric coiled-coil peptides to obtain inhibitors with mid-nM potency and selectivity over BCL-x. Binding of homodimeric coiled coils to MCL-1 is positively cooperative, resulting in stabilization of both partners. Homodimeric coiled coils support the binding of two copies of the target protein. Modification of the coiled-coil sequence to favor assembly of higher-order scaffolds (trimer and tetramer) negatively impacts inhibitory potency, with AlphaFold2 modeling and biophysical data indicating a complex interplay between coiled-coil oligomerization and target binding. Together, these data establish dimeric coiled coils as the most promising of such scaffolds to develop inhibitors of α-helix-mediated PPIs.
自组装肽是设计蛋白质-蛋白质相互作用(PPI)抑制剂的有前景的模板,因为它们可以被赋予定义亲和力和选择性的氨基酸,以及诸如溶解性和稳定性等良好的物理化学性质。在此,我们描述了一种可调节的卷曲螺旋支架及其与MCL-1的相互作用,MCL-1是一种α-螺旋结合抗凋亡蛋白,也是肿瘤学中的重要靶点。我们探讨了寡聚化、多价性和协同性在PPI抑制中的作用。将来自MCL-1结合肽(NOXA-B)的热点残基嫁接到同二聚体和异二聚体卷曲螺旋肽的外表面,以获得对BCL-x具有中纳摩尔效力和选择性的抑制剂。同二聚体卷曲螺旋与MCL-1的结合是正协同的,导致两个伙伴的稳定。同二聚体卷曲螺旋支持两个拷贝的靶蛋白的结合。将卷曲螺旋序列修饰为有利于高阶支架(三聚体和四聚体)的组装会对抑制效力产生负面影响,AlphaFold2建模和生物物理数据表明卷曲螺旋寡聚化和靶标结合之间存在复杂的相互作用。总之,这些数据表明二聚体卷曲螺旋是开发α-螺旋介导的PPI抑制剂的最有前景的此类支架。