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Crystal structures of the JAK2 pseudokinase domain and the pathogenic mutant V617F

机译:JAK2假激酶结构域和致病性突变体V617F的晶体结构

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The protein tyrosine kinase JAK2 mediates signaling through numerous cytokine receptors. JAK2 possesses a pseudokinase domain (JH2) and a tyrosine kinase domain (JH1). Through unknown mechanisms, JH2 regulates the catalytic activity of JH1, and hyperactivating mutations in the JH2 region of human JAK2 cause myeloproliferative neoplasms (MPNs). We showed previously that JAK2 JH2 is, in fact, catalytically active. Here we present crystal structures of human JAK2 JH2, including both wild type and the most prevalent MPN mutant, V617F. The structures reveal that JH2 adopts the fold of a prototypical protein kinase but binds Mg-ATP noncanonically. The structural and biochemical data indicate that the V617F mutation rigidifies α-helix C in the N lobe of JH2, facilitating trans-phosphorylation of JH1. The crystal structures of JH2 afford new opportunities for the design of novel JAK2 therapeutics targeting MPNs.
机译:酪氨酸蛋白激酶JAK2通过许多细胞因子受体介导信号传导。 JAK2具有伪激酶结构域(JH2)和酪氨酸激酶结构域(JH1)。通过未知的机制,JH2调节JH1的催化活性,人JAK2的JH2区域中的过度活化突变会引起骨髓增生性肿瘤(MPN)。先前我们证明了JAK2 JH2实际上具有催化活性。在这里,我们介绍了人类JAK2 JH2的晶体结构,包括野生型和最流行的MPN突变体V617F。该结构表明JH2采用原型蛋白激酶的折叠,但非典型地结合Mg-ATP。结构和生化数据表明,V617F突变使JH2 N瓣中的α-螺旋C刚性化,促进JH1的反磷酸化。 JH2的晶体结构为设计针对MPN的新型JAK2治疗药物提供了新的机会。

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