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Discovery of PDK1 Kinase Inhibitors with a Novel Mechanism of Action by Ultrahigh Throughput Screening

机译:通过超高通量筛选发现具有新型作用机制的PDK1激酶抑制剂

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摘要

The phosphoinositide 3-kinase/AKT signaling pathway plays a key role in cancer cell growth, survival, and angiogenesis. Phosphoinositide-dependent protein kinase-1 (PDK1) acts at a focal point in this pathway immediately downstream of phosphoinositide 3-kinase and PTEN, where it phosphorylates numerous AGC kinases. The PDK1 kinase domain has at least three ligand-binding sites: the ATP-binding pocket, the peptide substrate-binding site, and a groove in the N-terminal lobe that binds the C-terminal hydrophobic motif of its kinase substrates. Based on the unique PDK1 substrate recognition system, ultrahigh throughput TR-FRET and Alphascreen® screening assays were developed using a biotinylated version of the PDK1-tide substrate containing the activation loop of AKT fused to a pseudo-activated hydrophobic motif peptide. Using full-length PDK1, Km values were determined as 5.6 μm for ATP and 40 nm for the fusion peptide, revealing 50-fold higher affinity compared with the classical AKT(Thr-308)-tide. Kinetic and biophysical studies confirmed the PDK1 catalytic mechanism as a rapid equilibrium random bireactant reaction. Following an ultrahigh throughput screen of a large library, 2,000 compounds were selected from the reconfirmed hits by computational analysis with a focus on novel scaffolds. ATP-competitive hits were deconvoluted by dose-response studies at 1× and 10× Km concentrations of ATP, and specificity of binding was assessed in thermal shift assay. Inhibition studies using fusion PDK1-tide1 substrate versus AKT(Thr-308)-tide and kinase selectivity profiling revealed a novel selective alkaloid scaffold that evidently binds to the PDK1-interacting fragment pocket. Molecular modeling suggests a structural paradigm for the design of inhibitory versus activating allosteric ligands of PDK1.
机译:磷酸肌醇3-激酶/ AKT信号通路在癌细胞的生长,存活和血管生成中起关键作用。磷酸肌醇依赖性蛋白激酶-1(PDK1)在磷酸肌醇3-激酶和PTEN的下游直接作用于该途径的焦点,在该处磷酸化许多AGC激酶。 PDK1激酶结构域具有至少三个配体结合位点:ATP结合袋,肽底物结合位点和N端叶中的一个沟槽,该沟槽与其激酶底物的C端疏水基序结合。基于独特的PDK1底物识别系统,开发了超高通量TR-FRET和Alphascreen®筛选测定法,该方法使用了生物素化的PDK1-tide底物,其中包含与伪激活的疏水基序肽融合的AKT激活环。使用全长PDK1,Km值对于ATP确定为5.6μm,对于融合肽为40 nm,与传统的AKT(Thr-308)相比,其亲和力高50倍。动力学和生物物理研究证实了PDK1催化机理是一种快速平衡的随机双反应物反应。在对大型文库进行超高通量筛选后,通过针对新型支架的计算分析从重新确认的命中中选择了2,000种化合物。通过剂量反应研究在1x和10x Km的ATP浓度下对ATP竞争命中进行反卷积,并在热移分析中评估结合的特异性。使用融合的PDK1-tide1底物与AKT(Thr-308)-潮和激酶选择性谱进行的抑制研究揭示了一种新型的选择性生物碱支架,该支架显然与PDK1相互作用的片段袋结合。分子建模为PDK1抑制性和激活性变构配体的设计提出了结构范式。

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