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Mechanism of Two Classes of Cancer Mutations in the Phosphoinositide 3-Kinase Catalytic Subunit

机译:磷酸肌醇3-激酶催化亚基中两类癌症突变的机制

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Many human cancers involve up-regulation of the phosphoinositide 3-kinase PI3Kα, with oncogenic mutations identified in both the p110α catalytic and the p85α regulatory subunits. We used crystallographic and biochemical approaches to gain insight into activating mutations in two noncatalytic p110α domains—the adaptor-binding and the helical domains. A structure of the adaptor-binding domain of p110α in a complex with the p85α inter—Src homology 2 (inter-SH2) domain shows that oncogenic mutations in the adaptor-binding domain are not at the inter-SH2 interface but in a polar surface patch that is a plausible docking site for other domains in the holo p110/p85 complex. We also examined helical domain mutations and found that the Glu~(545) to Lys~(545) (E545K) oncogenic mutant disrupts an inhibitory charge-charge interaction with the p85 N-terminal SH2 domain. These studies extend our understanding of the architecture of PI3Ks and provide insight into how two classes of mutations that cause a gain in function can lead to cancer.
机译:许多人类癌症涉及磷酸肌醇3激酶PI3Kα的上调,在p110α催化亚基和p85α调节亚基中均发现了致癌突变。我们使用晶体学和生化方法来深入了解两个非催化p110α域(衔接子结合域和螺旋域)中的激活突变。与p85α-Src同源性2(inter-SH2)结构域形成复合体时,p110α的衔接子-结合结构域的结构显示,致癌性突变不是在SH2的界面,而是在极性表面修补程序,它是完整p110 / p85复合体中其他域的合理对接站点。我们还检查了螺旋结构域突变,发现Glu〜(545)至Lys〜(545)(E545K)致癌突变体破坏了与p85 N末端SH2域的抑制性电荷相互作用。这些研究扩展了我们对PI3K结构的理解,并提供了对引起功能增强的两类突变如何导致癌症的见解。

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