Chapman Alex M, McNaughton Brian R
†Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, United States.
ACS Chem Biol. 2015 Aug 21;10(8):1880-6. doi: 10.1021/acschembio.5b00201. Epub 2015 May 22.
Overexpression of the ankyrin repeat oncoprotein gankyrin is directly linked to the onset, proliferation, and/or metastasis of many cancers. The role of gankyrin in multiple disease-relevant biochemical processes is profound. In addition to other cellular processes, gankyrin overexpression leads to decreased cellular levels of p53, through a complex that involves MDM2. Thus, inhibition of this interaction is an attractive strategy for modulating oncogenic phenotypes in gankyrin-overexpressing cells. However, the lack of well-defined, hydrophobic, small-molecule binding pockets on the putative ankyrin repeat binding face presents a challenge to traditional small-molecule drug discovery. In contrast, by virtue of their size and relatively high folding energies, synthetic gankyrin-binding proteins could, in principle, compete with physiologically relevant PPIs involving gankyrin. Previously, we showed that a shape-complementary protein scaffold can be resurfaced to bind gankyrin with moderate affinity (KD ∼6 μM). Here, we used yeast display high-throughput screening, error-prone PCR, DNA shuffling, and protein engineering to optimize this complex. The best of these proteins bind gankyrin with excellent affinity (KD ∼21 nM), selectively co-purifies with gankyrin from a complex cellular milieu, modulates an interaction between gankyrin and a physiological binding partner (S6 ATPase), and suppresses gankyrin/MDM2-dependent ubiquitination of p53.
锚蛋白重复癌蛋白甘菊环素的过表达与多种癌症的发生、增殖和/或转移直接相关。甘菊环素在多种与疾病相关的生化过程中发挥着重要作用。除了其他细胞过程外,甘菊环素的过表达还会通过涉及MDM2的复合物导致细胞中p53水平降低。因此,抑制这种相互作用是调节甘菊环素过表达细胞中致癌表型的一种有吸引力的策略。然而,在假定的锚蛋白重复结合面上缺乏明确的、疏水的小分子结合口袋,这给传统的小分子药物发现带来了挑战。相比之下,由于其大小和相对较高的折叠能,合成的甘菊环素结合蛋白原则上可以与涉及甘菊环素的生理相关蛋白质-蛋白质相互作用(PPI)竞争。此前,我们表明可以对形状互补的蛋白质支架进行表面改造,使其以中等亲和力(KD ∼6 μM)结合甘菊环素。在这里,我们使用酵母展示高通量筛选、易错PCR、DNA改组和蛋白质工程来优化这种复合物。这些蛋白质中表现最佳的能够以优异的亲和力(KD ∼21 nM)结合甘菊环素,从复杂的细胞环境中与甘菊环素选择性地共纯化,调节甘菊环素与生理结合伴侣(S6 ATP酶)之间的相互作用,并抑制甘菊环素/MDM2依赖的p53泛素化。