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Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2

机译:蛋白质与TPX2相互作用的小分子抑制剂对AURKA激酶活性的变构调节

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摘要

The essential mitotic kinase Aurora A (AURKA) is controlled during cell cycle progression via two distinct mechanisms. Following activation loop autophosphorylation early in mitosis when it localizes to centrosomes, AURKA is allosterically activated on the mitotic spindle via binding to the microtubule-associated protein, TPX2. Here, we report the discovery of AurkinA, a novel chemical inhibitor of the AURKA-TPX2 interaction, which acts via an unexpected structural mechanism to inhibit AURKA activity and mitotic localization. In crystal structures, AurkinA binds to a hydrophobic pocket (the ‘Y pocket’) that normally accommodates a conserved Tyr-Ser-Tyr motif from TPX2, blocking the AURKA-TPX2 interaction. AurkinA binding to the Y- pocket induces structural changes in AURKA that inhibit catalytic activity in vitro and in cells, without affecting ATP binding to the active site, defining a novel mechanism of allosteric inhibition. Consistent with this mechanism, cells exposed to AurkinA mislocalise AURKA from mitotic spindle microtubules. Thus, our findings provide fresh insight into the catalytic mechanism of AURKA, and identify a key structural feature as the target for a new class of dual-mode AURKA inhibitors, with implications for the chemical biology and selective therapeutic targeting of structurally related kinases.
机译:必需的有丝分裂激酶Aurora A(AURKA)通过两种不同的机制在细胞周期进程中受到控制。当激活环在有丝分裂早期定位于中心体时发生自磷酸化后,AURKA通过与微管相关蛋白TPX2结合而在有丝分裂纺锤体上被变构激活。在这里,我们报告了AurkinA的发现,AurkinA是AURKA-TPX2相互作用的新型化学抑制剂,其通过意想不到的结构机制发挥作用来抑制AURKA活性和有丝分裂定位。在晶体结构中,AurkinA结合至疏水性口袋(“ Y口袋”),该口袋通常容纳来自TPX2的保守Tyr-Ser-Tyr基序,从而阻断了AURKA-TPX2的相互作用。 AurkinA与Y袋的结合会诱导AURKA的结构变化,从而在体外和细胞中抑制催化活性,而不会影响ATP与活性位点的结合,从而定义了变构抑制的新机制。与该机制一致,暴露于AurkinA的细胞从有丝分裂纺锤体微管中错位了AURKA。因此,我们的发现为AURKA的催化机理提供了新的见解,并确定了关键的结构特征作为新型双模AURKA抑制剂的靶标,对结构相关激酶的化学​​生物学和选择性治疗靶标具有影响。

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