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Complex Effects of Naturally Occurring Mutations in the JAK3 Pseudokinase Domain: Evidence for Interactions between the Kinase and Pseudokinase Domains

机译:JAK3伪激酶域中自然发生的突变的复杂影响:激酶和伪激酶域之间相互作用的证据。

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摘要

The structure of Janus kinases (JAKs) is unique among protein tyrosine kinases in having tandem, nonidentical kinase and pseudokinase domains. Despite its conservation in evolution, however, the function of the pseudokinase domain remains poorly understood. Lack of JAK3 expression results in severe combined immunodeficiency (SCID). In this study, we analyze two SCID patients with mutations in the JAK3 pseudokinase domain, which allows for protein expression but disrupts the regulation of the kinase activity. Specifically, these mutant forms of JAK3 had undetectable kinase activity in vitro but were hyperphosphorylated both in patients' Epstein-Barr virus-transformed B cells and when overexpressed in COS7 cells. Moreover, reconstitution of cells with these mutants demonstrated that, although they were constitutively phosphorylated basally, they were unable to transmit cytokine-dependent signals. Further analysis showed that the isolated catalytic domain of JAK3 was functional whereas either the addition of the pseudokinase domain or its deletion from the full-length molecule reduced catalytic activity. Through coimmunoprecipitation of the isolated pseudokinase domain with the isolated catalytic domain, we provide the first evidence that these two domains interact. Furthermore, whereas the wild-type pseudokinase domain modestly inhibited kinase domain-mediated STAT5 phosphorylation, the patient-derived mutants markedly inhibited this phosphorylation. We thus conclude that the JAK3 pseudokinase domain is essential for JAK3 function by regulating its catalytic activity and autophosphorylation. We propose a model in which this occurs via intramolecular interaction with the kinase domain and that increased inhibition of kinase activity by the pseudokinase domain likely contributes to the disease pathogenesis in these two patients.
机译:Janus激酶(JAKs)的结构在蛋白质酪氨酸激酶中具有串联,异源激酶和假激酶结构域,这是独特的。尽管其在进化中是保守的,但是假激酶结构域的功能仍然知之甚少。缺乏JAK3表达会导致严重的联合免疫缺陷(SCID)。在这项研究中,我们分析了两名JAK3假激酶结构域突变的SCID患者,该突变允许蛋白质表达但破坏了激酶活性的调节。具体而言,这些突变形式的JAK3在体外具有不可检测的激酶活性,但在患者的爱泼斯坦-巴尔病毒转化的B细胞中和在COS7细胞中过表达时均被过度磷酸化。此外,用这些突变体重建细胞表明,尽管它们在基础上被组成性磷酸化,但它们却无法传递细胞因子依赖性信号。进一步的分析表明,分离的JAK3催化结构域具有功能,而假激酶结构域的添加或其从全长分子中的缺失会降低催化活性。通过分离的假激酶结构域与分离的催化结构域的共免疫沉淀,我们提供了这两个结构域相互作用的第一个证据。此外,尽管野生型假激酶结构域适度抑制了激酶结构域介导的STAT5磷酸化,但患者来源的突变体却明显抑制了这种磷酸化。因此,我们得出结论,JAK3假激酶结构域通过调节其催化活性和自磷酸化作用对于JAK3功能至关重要。我们提出了一种模型,其中这是通过与激酶结构域的分子内相互作用而发生的,并且假激酶结构域对激酶活性的抑制作用增加可能有助于这两名患者的疾病发病机理。

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