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The SH2 domain of Abl kinases regulates kinase autophosphorylation by controlling activation loop accessibility

机译:Abl激酶的SH2结构域通过控制激活环可及性来调节激酶自磷酸化

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The activity of protein kinases is regulated by multiple molecular mechanisms, and their disruption is a common driver of oncogenesis. A central and almost universal control element of protein kinase activity is the activation loop that utilizes both conformation and phosphorylation status to determine substrate access. In this study, we use recombinant Abl tyrosine kinases and conformation-specific kinase inhibitors to quantitatively analyse structural changes that occur after Abl activation. Allosteric SH2–kinase domain interactions were previously shown to be essential for the leukemogenesis caused by the Bcr – Abl oncoprotein. We find that these allosteric interactions switch the Abl activation loop from a closed to a fully open conformation. This enables the trans -autophosphorylation of the activation loop and requires prior phosphorylation of the SH2–kinase linker. Disruption of the SH2–kinase interaction abolishes activation loop phosphorylation. Our analysis provides a molecular mechanism for the SH2 domain-dependent activation of Abl that may also regulate other tyrosine kinases.
机译:蛋白激酶的活性受多种分子机制调节,其破坏是肿瘤发生的常见驱动力。蛋白质激酶活性的主要且几乎是通用的控制元件是激活环,该激活环利用构象和磷酸化状态来确定底物的进入。在这项研究中,我们使用重组Abl酪氨酸激酶和构象特异性激酶抑制剂来定量分析Abl激活后发生的结构变化。先前已证明,别构SH2-激酶结构域相互作用对于Bcr-Abl癌蛋白引起的白血病发生至关重要。我们发现这些变构相互作用将Abl激活环从闭合构象切换为完全开放构象。这可以使激活环发生反式自磷酸化,并需要事先将SH2-激酶接头磷酸化。 SH2-激酶相互作用的破坏消除了激活环的磷酸化。我们的分析为Abl的SH2结构域依赖性激活提供了分子机制,该机制也可能调节其他酪氨酸激酶。

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