Cancer Innovation Laboratory, Center for Cancer Research, National Cancer Institute, NIH, Bethesda, MD 20892.
Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, NIH, Bethesda, MD 20892.
Proc Natl Acad Sci U S A. 2023 Aug 29;120(35):e2305037120. doi: 10.1073/pnas.2305037120. Epub 2023 Aug 21.
Polo-like kinase 1 (Plk1) is considered an attractive target for anticancer therapy. Over the years, studies on the noncatalytic polo-box domain (PBD) of Plk1 have raised the expectation of generating highly specific protein-protein interaction inhibitors. However, the molecular nature of the canonical PBD-dependent interaction, which requires extensive water network-mediated interactions with its phospholigands, has hampered efforts to identify small molecules suitable for Plk1 PBD drug discovery. Here, we report the identification of the first allosteric inhibitor of Plk1 PBD, called Allopole, a prodrug that can disrupt intracellular interactions between PBD and its cognate phospholigands, delocalize Plk1 from centrosomes and kinetochores, and induce mitotic block and cancer cell killing. At the structural level, its unmasked active form, Allopole-A, bound to a deep Trp-Phe-lined pocket occluded by a latch-like loop, whose adjoining region was required for securely retaining a ligand anchored to the phospho-binding cleft. Allopole-A binding completely dislodged the L2 loop, an event that appeared sufficient to trigger the dissociation of a phospholigand and inhibit PBD-dependent Plk1 function during mitosis. Given Allopole's high specificity and antiproliferative potency, this study is expected to open an unexplored avenue for developing Plk1 PBD-specific anticancer therapeutic agents.
丝氨酸/苏氨酸激酶 polo 样激酶 1(Plk1)被认为是癌症治疗的一个有吸引力的靶点。多年来,对 Plk1 的非催化 polo 框结构域(PBD)的研究提高了产生高度特异性蛋白-蛋白相互作用抑制剂的期望。然而,经典的 PBD 依赖性相互作用的分子性质需要与磷酸配体广泛的水网络介导相互作用,这阻碍了识别适合 Plk1 PBD 药物发现的小分子的努力。在这里,我们报告了 Plk1 PBD 的第一个别构抑制剂的鉴定,称为 Allopole,这是一种前药,可以破坏 PBD 与其同源磷酸配体之间的细胞内相互作用,将 Plk1 从中心体和动粒上解离,并诱导有丝分裂阻断和癌细胞杀伤。在结构水平上,其非掩蔽的活性形式 Allopole-A 结合到一个被一个闩锁样环阻塞的深色 Trp-Phe 线口袋中,该闩锁样环的邻接区域是将配体固定在磷酸结合裂隙中的必需的。Allopole-A 结合完全驱逐了 L2 环,这一事件似乎足以触发磷酸配体的解离并抑制有丝分裂期间 PBD 依赖性 Plk1 功能。鉴于 Allopole 的高特异性和抗增殖效力,这项研究有望为开发 Plk1 PBD 特异性抗癌治疗剂开辟一条未探索的途径。