Pike Ashley C W, Rellos Peter, Niesen Frank H, Turnbull Andrew, Oliver Antony W, Parker Sirlester A, Turk Benjamin E, Pearl Laurence H, Knapp Stefan
Structural Genomics Consortium, Botnar Research Centre, University of Oxford, Oxford, UK.
EMBO J. 2008 Feb 20;27(4):704-14. doi: 10.1038/emboj.2008.8. Epub 2008 Jan 31.
Protein kinase autophosphorylation of activation segment residues is a common regulatory mechanism in phosphorylation-dependent signalling cascades. However, the molecular mechanisms that guarantee specific and efficient phosphorylation of these sites have not been elucidated. Here, we report on three novel and diverse protein kinase structures that reveal an exchanged activation segment conformation. This dimeric arrangement results in an active kinase conformation in trans, with activation segment phosphorylation sites in close proximity to the active site of the interacting protomer. Analytical ultracentrifugation and chemical cross-linking confirmed the presence of dimers in solution. Consensus substrate sequences for each kinase showed that the identified activation segment autophosphorylation sites are non-consensus substrate sites. Based on the presented structural and functional data, a model for specific activation segment phosphorylation at non-consensus substrate sites is proposed that is likely to be common to other kinases from diverse subfamilies.
蛋白激酶激活环残基的自磷酸化是磷酸化依赖性信号级联反应中一种常见的调节机制。然而,确保这些位点特异性和高效磷酸化的分子机制尚未阐明。在此,我们报道了三种新颖且不同的蛋白激酶结构,它们揭示了一种交换的激活环构象。这种二聚体排列导致反式的活性激酶构象,激活环磷酸化位点紧邻相互作用原聚体的活性位点。分析超速离心和化学交联证实溶液中存在二聚体。每种激酶的共有底物序列表明,所鉴定的激活环自磷酸化位点是非共有底物位点。基于所呈现的结构和功能数据,提出了一种在非共有底物位点特异性激活环磷酸化的模型,该模型可能为来自不同亚家族的其他激酶所共有。