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Exploring the chemical space of the lysine-binding pocket of the first kringle domain of hepatocyte growth factor/scatter factor (HGF/SF) yields a new class of inhibitors of HGF/SF-MET binding

机译:探索肝细胞生长因子/散射因子(HGF / SF)的第一个kringle域的赖氨酸结合口袋的化学空间可产生一类新的HGF / SF-MET结合抑制剂

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摘要

The growth/motility factor hepatocyte growth factor/scatter factor (HGF/SF) and its receptor, the tyrosine kinase MET, constitute a signalling system essential for embryogenesis and for tissue/organ regeneration in post-natal life. HGF/SF-MET signalling, however, also plays a key role in the onset of metastasis of a large number of human tumours. Both HGF/SF and MET are high molecular weight proteins that bury an extensive interface upon complex formation and thus constitute a challenging target for the development of low molecular weight inhibitors. Here we have used surface plasmon resonance (SPR), nuclear magnetic resonance (NMR) and X-ray crystallography to screen a diverse fragment library of 1338 members as well as a range of piperazine-like compounds. Several small molecules were found to bind in the lysine-binding pocket of the kringle 1 domain of HGF/SF and its truncated splice variant NK1. We have defined the binding mode of these compounds, explored their biological activity and we show that selected fragments inhibit MET downstream signalling. Thus we demonstrate that targeting the lysine-binding pocket of NK1 is an effective strategy to generate MET receptor antagonists and we offer proof of concept that the HGF/SF-MET interface may be successfully targeted with small molecules. These studies have broad implications for the development of HGF/SF-MET therapeutics and cancer treatment.
机译:生长/运动因子肝细胞生长因子/分散因子(HGF / SF)及其受体酪氨酸激酶MET构成了出生后胚胎发生和组织/器官再生必不可少的信号系统。然而,HGF / SF-MET信号在大量人类肿瘤转移的发生中也起着关键作用。 HGF / SF和MET都是高分子量蛋白,它们在复合物形成时掩盖了广泛的界面,因此构成了开发低分子量抑制剂的具有挑战性的目标。在这里,我们使用表面等离子体共振(SPR),核磁共振(NMR)和X射线晶体学来筛选包含1338个成员以及一系列哌嗪类化合物的多样化片段库。发现几个小分子结合在HGF / SF的kringle 1域的赖氨酸结合口袋中,并截短了其剪接变体NK1。我们已经定义了这些化合物的结合模式,探索了它们的生物学活性,并且我们表明选择的片段抑制了MET下游信号传导。因此,我们证明靶向NK1的赖氨酸结合口袋是产生MET受体拮抗剂的有效策略,并且我们提供了HGF / SF-MET界面可能成功靶向小分子的概念证明。这些研究对HGF / SF-MET治疗方法和癌症治疗的发展具有广泛的意义。

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