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Structural mechanism of synergistic activation of Aurora kinase B/C by phosphorylated INCENP

机译:磷酸化INCENP协同激活Aurora激酶B / C的结构机制

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摘要

Aurora kinases B and C (AURKB/AURKC) are activated by binding to the C-terminal domain of INCENP. Full activation requires phosphorylation of two serine residues of INCENP that are conserved through evolution, although the mechanism of this activation has not been explained. Here we present crystal structures of the fully active complex of AURKC bound to INCENP, consisting of phosphorylated, activated, AURKC and INCENP phosphorylated on its TSS motif, revealing the structural and biochemical mechanism of synergistic activation of AURKC:INCENP. The structures show that TSS motif phosphorylation stabilises the kinase activation loop of AURKC. The TSS motif phosphorylations alter the substrate-binding surface consistent with a mechanism of altered kinase substrate selectivity and stabilisation of the protein complex against unfolding. We also analyse the binding of the most specific available AURKB inhibitor, BRD-7880, and demonstrate that the well-known Aurora kinase inhibitor VX-680 disrupts binding of the phosphorylated INCENP TSS motif.
机译:极光激酶B和C(AURKB / AURKC)通过与INCENP的C末端结构域结合而被激活。完全激活需要INCENP的两个丝氨酸残基的磷酸化,这些残基通过进化得以保守,尽管该激活的机理尚未阐明。在这里,我们介绍了结合到INCENP的AURKC的完全活性复合物的晶体结构,该结构由在其TSS基序上磷酸化,活化,AURKC和INCENP组成,揭示了AURKC:INCENP协同活化的结构和生化机制。结构表明,TSS基序磷酸化可稳定AURKC的激酶激活环。 TSS基序的磷酸化改变了底物结合表面,这与改变的激酶底物选择性和蛋白质复合物抵抗折叠的稳定性的机制一致。我们还分析了最具体的可用AURKB抑制剂BRD-7880的结合,并证明了众所周知的Aurora激酶抑制剂VX-680破坏了磷酸化的INCENP TSS基序的结合。

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