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首页> 外文期刊>Chemistry & biology >Discovery and characterization of a cell-permeable, small-molecule c-Abl kinase activator that binds to the myristoyl binding site
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Discovery and characterization of a cell-permeable, small-molecule c-Abl kinase activator that binds to the myristoyl binding site

机译:发现并表征与肉豆蔻酰基结合位点结合的细胞可渗透的小分子c-Abl激酶激活剂

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摘要

c-Abl kinase activity is regulated by a unique mechanism involving the formation of an autoinhibited conformation in which the N-terminal myristoyl group binds intramolecularly to the myristoyl binding site on the kinase domain and induces the bending of the αI helix that creates a docking surface for the SH2 domain. Here, we report a small-molecule c-Abl activator, DPH, that displays potent enzymatic and cellular activity in stimulating c-Abl activation. Structural analyses indicate that DPH binds to the myristoyl binding site and prevents the formation of the bent conformation of the αI helix through steric hindrance, a mode of action distinct from the previously identified allosteric c-Abl inhibitor, GNF-2, that also binds to the myristoyl binding site. DPH represents the first cell-permeable, small-molecule tool compound for c-Abl activation.
机译:c-Abl激酶活性受涉及形成自抑制构象的独特机制的调节,其中N末端肉豆蔻酰基分子内结合到激酶结构域上的肉豆蔻酰基结合位点,并诱导形成对接表面的αI螺旋弯曲SH2域。在这里,我们报告了一种小分子c-Abl激活剂DPH,它在刺激c-Abl激活中显示出强大的酶和细胞活性。结构分析表明,DPH与肉豆蔻酰结合位点结合,并通过空间位阻阻止了αI螺旋的弯曲构象的形成,该位阻是一种不同于先前确定的变构c-Abl抑制剂GNF-2的作用方式,后者也能与肉豆蔻酰基结合位点。 DPH代表第一个用于c-Abl激活的细胞可渗透的小分子工具化合物。

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