Hewitt Sarah H, Filby Maria H, Hayes Ed, Kuhn Lars T, Kalverda Arnout P, Webb Michael E, Wilson Andrew J
School of Chemistry, University of Leeds, Woodhouse Lane, Leeds, LS2 9JT, UK.
Astbury Centre For Structural Molecular Biology, University of Leeds, Woodhouse Lane, Leeds, LS2 9JT, UK.
Chembiochem. 2017 Jan 17;18(2):223-231. doi: 10.1002/cbic.201600552. Epub 2016 Dec 19.
Protein surface mimetics achieve high-affinity binding by exploiting a scaffold to project binding groups over a large area of solvent-exposed protein surface to make multiple cooperative noncovalent interactions. Such recognition is a prerequisite for competitive/orthosteric inhibition of protein-protein interactions (PPIs). This paper describes biophysical and structural studies on ruthenium(II) tris(bipyridine) surface mimetics that recognize cytochrome (cyt) c and inhibit the cyt c/cyt c peroxidase (CCP) PPI. Binding is electrostatically driven, with enhanced affinity achieved through enthalpic contributions thought to arise from the ability of the surface mimetics to make a greater number of noncovalent interactions than CCP with surface-exposed basic residues on cyt c. High-field natural abundance H, N HSQC NMR experiments are consistent with surface mimetics binding to cyt c in similar manner to CCP. This provides a framework for understanding recognition of proteins by supramolecular receptors and informing the design of ligands superior to the protein partners upon which they are inspired.
蛋白质表面模拟物通过利用一种支架在大面积暴露于溶剂的蛋白质表面上投射结合基团,以形成多个协同非共价相互作用,从而实现高亲和力结合。这种识别是竞争性/变构抑制蛋白质-蛋白质相互作用(PPI)的先决条件。本文描述了关于三联吡啶钌(II)表面模拟物的生物物理和结构研究,该模拟物可识别细胞色素(cyt)c并抑制cyt c/细胞色素c过氧化物酶(CCP)的PPI。结合是由静电驱动的,通过焓贡献增强了亲和力,这种焓贡献被认为源于表面模拟物比CCP能够与cyt c表面暴露的碱性残基形成更多非共价相互作用的能力。高场天然丰度1H、15N HSQC NMR实验表明,表面模拟物与cyt c的结合方式与CCP类似。这为理解超分子受体对蛋白质的识别提供了一个框架,并为设计优于其灵感来源的蛋白质伴侣的配体提供了依据。