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Characterization of the Raf Kinase Inhibitory Protein (RKIP) Binding Pocket: NMR-Based Screening Identifies Small-Molecule Ligands

机译:Raf激酶抑制蛋白(RKIP)结合口袋的表征:基于核磁共振的筛选确定小分子配体。

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Background Raf kinase inhibitory protein (RKIP), also known as phoshaptidylethanolamine binding protein (PEBP), has been shown to inhibit Raf and thereby negatively regulate growth factor signaling by the Raf/MAP kinase pathway. RKIP has also been shown to suppress metastasis. We have previously demonstrated that RKIP/Raf interaction is regulated by two mechanisms: phosphorylation of RKIP at Ser-153, and occupation of RKIP's conserved ligand binding domain with a phospholipid (2-dihexanoyl-sn-glycero-3-phosphoethanolamine; DHPE). In addition to phospholipids, other ligands have been reported to bind this domain; however their binding properties remain uncharacterized. Methods/Findings In this study, we used high-resolution heteronuclear NMR spectroscopy to screen a chemical library and assay a number of potential RKIP ligands for binding to the protein. Surprisingly, many compounds previously postulated as RKIP ligands showed no detectable binding in near-physiological solution conditions even at millimolar concentrations. In contrast, we found three novel ligands for RKIP that specifically bind to the RKIP pocket. Interestingly, unlike the phospholipid, DHPE, these newly identified ligands did not affect RKIP binding to Raf-1 or RKIP phosphorylation. One out of the three ligands displayed off target biological effects, impairing EGF-induced MAPK and metabolic activity. Conclusions/Significance This work defines the binding properties of RKIP ligands under near physiological conditions, establishing RKIP's affinity for hydrophobic ligands and the importance of bulky aliphatic chains for inhibiting its function. The common structural elements of these compounds defines a minimal requirement for RKIP binding and thus they can be used as lead compounds for future design of RKIP ligands with therapeutic potential.
机译:背景Raf激酶抑制蛋白(RKIP),也称为磷脂酰乙醇胺结合蛋白(PEBP),已显示抑制Raf,从而通过Raf / MAP激酶途径负调控生长因子信号传导。 RKIP也已显示可抑制转移。我们先前已经证明RKIP / Raf相互作用受两种机制调控:RKIP在Ser-153上的磷酸化,以及RKIP保守的配体结合结构域被磷脂(2-二己酰基-sn-甘油-3-磷酸乙醇胺; DHPE)占据。据报道,除磷脂外,其他配体也可结合该结构域。然而,它们的结合性质仍未表征。方法/发现在这项研究中,我们使用高分辨率异核NMR光谱法筛选化学文库并测定了许多潜在的RKIP配体与蛋白质的结合。出人意料的是,许多以前被假定为RKIP配体的化合物即使在毫摩尔浓度下,在近生理溶液条件下也没有可检测到的结合。相反,我们发现了三种新的RKIP配体,它们与RKIP口袋特异性结合。有趣的是,与磷脂DHPE不同,这些新鉴定的配体不影响RKIP与Raf-1的结合或RKIP磷酸化。三种配体中的一种表现出靶生物效应,损害了EGF诱导的MAPK和代谢活性。结论/意义这项工作确定了RKIP配体在近乎生理条件下的结合特性,确立了RKIP对疏水配体的亲和力以及庞大的脂族链抑制其功能的重要性。这些化合物的共同结构要素定义了对RKIP结合的最低要求,因此,它们可用作未来具有治疗潜力的RKIP配体设计的先导化合物。

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