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首页> 外文期刊>Cell Reports >Cracking the Molecular Origin of Intrinsic Tyrosine Kinase Activity through Analysis of Pathogenic Gain-of-Function Mutations
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Cracking the Molecular Origin of Intrinsic Tyrosine Kinase Activity through Analysis of Pathogenic Gain-of-Function Mutations

机译:通过病原性功能获得性突变的分析来破解内在酪氨酸激酶活性的分子起源。

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摘要

The basal (ligand-independent) kinase activity of receptor tyrosine kinases (RTKs) promotes trans-phosphorylation on activation loop tyrosines upon ligand-induced receptor dimerization, thus upregulating intrinsic kinase activity and triggering intracellular signaling. To understand the molecular determinants of intrinsic kinase activity, we used X-ray crystallography and NMR spectroscopy to analyze pathogenic FGF receptor mutants with gradations in gain-of-function activity. These structural analyses revealed a ''two-state'' dynamic equilibrium model whereby the kinase toggles between an ''inhibited,'' structurally rigid ground state and a more dynamic and heterogeneous active state. The pathogenic mutations have different abilities to shift this equilibrium toward the active state. The increase in the fractional population of FGF receptors in the active state correlates with the degree of gain-of-function activity and clinical severity. Our data demonstrate that the fractional population of RTKs in the active state determines intrinsic kinase activity and underscore how a slight increase in the active population of kinases can have grave consequences for human health.
机译:受体酪氨酸激酶(RTKs)的基础(独立于配体的)激酶活性在配体诱导的受体二聚化时促进活化环酪氨酸上的反式磷酸化,从而上调内在激酶活性并触发细胞内信号传导。为了了解内在激酶活性的分子决定因素,我们使用了X射线晶体学和NMR光谱分析功能增强活性的病原性FGF受体突变体。这些结构分析揭示了“两态”动态平衡模型,从而使激酶在“抑制的”,结构刚性的基态与更具动态性和异构性的活性态之间切换。致病突变具有使这种平衡向活跃状态转变的不同能力。处于活动状态的FGF受体分数群体的增加与功能获得活性的程度和临床严重程度相关。我们的数据表明,处于活动状态的RTK的小部分种群决定了内在的激酶活性,并强调了激酶的活跃种群的轻微增加如何对人类健康产生严重影响。

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