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首页> 外文期刊>PLoS Computational Biology >Substrate-Specific Reorganization of the Conformational Ensemble of CSK Implicates Novel Modes of Kinase Function
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Substrate-Specific Reorganization of the Conformational Ensemble of CSK Implicates Novel Modes of Kinase Function

机译:CSK构象集合的特定于基质的重组涉及激酶功能的新型模式。

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Protein kinases use ATP as a phosphoryl donor for the posttranslational modification of signaling targets. It is generally thought that the binding of this nucleotide induces conformational changes leading to closed, more compact forms of the kinase domain that ideally orient active-site residues for efficient catalysis. The kinase domain is oftentimes flanked by additional ligand binding domains that up- or down-regulate catalytic function. C-terminal Src kinase (Csk) is a multidomain tyrosine kinase that is up-regulated by N-terminal SH2 and SH3 domains. Although the X-ray structure of Csk suggests the enzyme is compact, X-ray scattering studies indicate that the enzyme possesses both compact and open conformational forms in solution. Here, we investigated whether interactions with the ATP analog AMP-PNP and ADP can shift the conformational ensemble of Csk in solution using a combination of small angle x-ray scattering and molecular dynamics simulations. We find that binding of AMP-PNP shifts the ensemble towards more extended rather than more compact conformations. Binding of ADP further shifts the ensemble towards extended conformations, including highly extended conformations not adopted by the apo protein, nor by the AMP-PNP bound protein. These ensembles indicate that any compaction of the kinase domain induced by nucleotide binding does not extend to the overall multi-domain architecture. Instead, assembly of an ATP-bound kinase domain generates further extended forms of Csk that may have relevance for kinase scaffolding and Src regulation in the cell.
机译:蛋白激酶使用ATP作为磷酰基供体,用于信号转导靶标的翻译后修饰。通常认为,该核苷酸的结合诱导构象变化,导致封闭的,更紧凑的激酶结构域形式,其理想地定向活性位点残基以进行有效的催化。激酶结构域通常两侧为额外的配体结合结构域,其上调或下调催化功能。 C端Src激酶(Csk)是一种多域酪氨酸激酶,由N端SH2和SH3域上调。尽管Csk的X射线结构表明该酶是致密的,但X射线散射研究表明该酶在溶液中同时具有致密和开放的构象形式。在这里,我们结合小角度X射线散射和分子动力学模拟研究了与ATP类似物AMP-PNP和ADP的相互作用是否可以改变溶液中Csk的构象整体。我们发现,AMP-PNP的结合使整体向更扩展而不是更紧凑的构象移动。 ADP的结合进一步使整体朝着延伸的构象移动,包括apo蛋白或AMP-PNP结合蛋白未采用的高度延伸的构象。这些集合表明由核苷酸结合诱导的激酶结构域的任何紧缩都不会扩展到整个多结构域结构。取而代之的是,ATP结合激酶结构域的组装会产生Csk的其他扩展形式,这可能与细胞中的激酶支架和Src调节有关。

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