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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Disruption of R867 and Y613 interaction plays key roles in JAK2 R867Q mutation caused acute leukemia
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Disruption of R867 and Y613 interaction plays key roles in JAK2 R867Q mutation caused acute leukemia

机译:R867和Y613互动的破坏在JAK2 R867Q突变中发挥关键作用导致急性白血病

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摘要

Janus tyrosine kinase 2 (JAK2) mediates downstream signaling of cytokine receptors in all hematological lineages, constitutively active somatic JAK2 mutations were important for the leukemogenesis of acute leukemia (AL). The JAK2 R867Q somatic mutation is detected in a subset of AL patients. However, roles of JAK2 R867Qmutation in the pathogenesis of AL remain unclear. In this study, homology modeling analysis showed that loss of interaction between R867 and Y613 disrupted the JAK2 JH1/JH2 domain's interactions was responsible for its activation. JAK2 R867Qand mutations (R867A and R867G) abolished this interaction caused JAK2 constitutive activation. While, mutations (R867K, Y613E, R867K/Y613E) repairing this interaction reduced JAK2 R867Q mutation's activity. Furthermore, our studies showed that abolished R867 and Y613 interaction disrupted JH1/JH2 domains' interactions and led to JAK2 constitutive activation. More importantly, mutations (R867Q R867A and R867G) disrupted this interaction enhanced the activity of JAK2-STAT5 pathway and the proliferation of Ba/F3 and MV4-11 cells. Further study showed that JAK2 R867Q mutation promoted the expression of proliferation marker and inhibited the differentiation marker of Ba/F3 and MV4-11 cells. Thus our studies provide clues in understanding the pathogenesis of JAK2 R867Q mutation in AL. (C) 2019 Elsevier B.V. All rights reserved.
机译:Janus酪氨酸激酶2(JAK2)在所有血液学谱系中介导细胞因子受体的下游信号,组成型体急性jak2突变对于急性白血病(Al)的白血病是很重要的。在Al患者的子集中检测到JAK2 R867Q体细胞突变。然而,JAK2 R867QMGURGEGUR的角色在Al的发病机制中仍然不清楚。在该研究中,同源性建模分析表明,R867和Y613之间的相互作用损失破坏了JAK2 JH1 / JH2结构域的相互作用是负责其激活。 JAK2 R867QAND突变(R867A和R867G)废除了这种相互作用导致JAK2组成型激活。虽然修复这种相互作用的突变(R867K,Y613E,R867K / Y613E)减少了JAK2 R867Q突变的活动。此外,我们的研究表明,废除R867和Y613相互作用破坏了JH1 / JH2结构域的相互作用,并导致JAK2组成型激活。更重要的是,突变(R867Q R867A和R867G)破坏该相互作用增强了JAK2-STAT5途径的活性和BA / F3和MV4-11细胞的增殖。进一步的研究表明,JAK2 R867Q突变促进了增殖标志物的表达,并抑制了Ba / F3和MV4-11细胞的分化标志物。因此,我们的研究提供了了解al的jak2 r867q突变的发病机制。 (c)2019 Elsevier B.v.保留所有权利。

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