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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >SOCS1 cooperates with FLT3-ITD in the development of myeloproliferative disease by promoting the escape from external cytokine control
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SOCS1 cooperates with FLT3-ITD in the development of myeloproliferative disease by promoting the escape from external cytokine control

机译:SOCS1与FLT3-ITD合作通过促进逃避外部细胞因子控制而在骨髓增生性疾病的发展中合作

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Activating mutations in the receptor tyrosine kinase FLT3 are frequently found in acute myelogenous leukemia patients and confer poor clinical prognosis. It is unclear how leukemic blasts escape cytokine control that regulates normal hematopoiesis. We have recently demonstrated that FLT3-internal tandem duplication (ITD), when localized to the biosynthetic compartment, aberrantly activates STAT5. Here, we show that one of the target genes induced by STAT5 is suppressor of cytokine signaling (SOCS)1 - a surprising finding for a known tumor suppressor. Although SOCS1 expression in murine bone marrow severely impaired cytokine-induced colony growth, it failed to inhibit FLT3-ITD-supported colony growth, indicating resistance of FLT3-ITD to SOCS1. In addition, SOCS1 coexpression did not affect FLT3-ITD-mediated signaling or proliferation. Importantly, SOCS1 coexpression inhibited interferon-αand interferon-γ signaling and protected FLT3-ITD hematopoietic cells from interferon-mediated growth inhibitory effects. In a murine bone marrow transplantation model, the coexpression of SOCS1 and FLT3-ITD significantly shortened the latency of a myeloproliferative disease compared with FLT3-ITD alone (P < .01). Mechanistically, SOCS proteins shield FLT3-ITD from external cytokine control, thereby promoting leukemogenesis. The data demonstrate that SOCS1 acts as a conditional oncogene, providing novel molecular insights into cytokine resistance in oncogenic transformation. Restoring cytokine control may provide a new way of therapeutic intervention.
机译:受体酪氨酸激酶FLT3的激活突变在急性粒细胞性白血病患者中经常发现,临床预后较差。尚不清楚白血病细胞如何逃逸调节正常造血作用的细胞因子控制。我们最近已经证明,当位于生物合成区室时,FLT3内部串联复制(ITD)会异常激活STAT5。在这里,我们显示由STAT5诱导的靶基因之一是细胞因子信号传导(SOCS)1的抑制剂-对于已知的肿瘤抑制剂而言,这是一个令人惊讶的发现。尽管SOCS1在鼠骨髓中的表达严重损害了细胞因子诱导的菌落生长,但未能抑制FLT3-ITD支持的菌落生长,表明FLT3-ITD对SOCS1具有抗性。此外,SOCS1共表达不影响FLT3-ITD介导的信号传导或增殖。重要的是,SOCS1共表达可抑制干扰素-α和干扰素-γ信号传导,并保护FLT3-ITD造血细胞免受干扰素介导的生长抑制作用。在鼠类骨髓移植模型中,与单独的FLT3-ITD相比,SOCS1和FLT3-ITD的共表达显着缩短了骨髓增生性疾病的潜伏期(P <0.01)。从机理上讲,SOCS蛋白可保护FLT3-ITD免受外部细胞因子的控制,从而促进白血病的发生。数据表明,SOCS1充当条件癌基因,为致癌转化中的细胞因子抗性提供了新颖的分子见解。恢复细胞因子的控制可能提供治疗干预的新方法。

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