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Intrinsic and extrinsic mechanisms contribute to maintain the JAK/STAT pathway aberrantly activated in T-type large granular lymphocyte leukemia

机译:内部和外部机制有助于维持T型大颗粒淋巴细胞白血病中异常激活的JAK / STAT通路

摘要

The JAK/STAT pathway is altered in T-cell large granular lymphocytic leukemia. In all patients, leukemic LGLs display upregulation of phosphorylated STAT3 (P-STAT3) that activates expression of many antiapoptotic genes. To investigate the mechanisms maintaining STAT3 aberrantly phosphorylated using transcriptional protein and functional assays, we analyzed interleukin (IL)-6 and suppressor of cytokine signaling-3 (SOCS3), 2 key factors of the JAK/STAT pathway that induce and inhibit STAT3 activation, respectively. We showed that IL-6 was highly expressed and released by the patients' peripheral blood LGL-depleted population, accounting for a trans-signaling process. By neutralizing IL-6 or its specific receptor with specific antibodies, a significant reduction of P-STAT3 levels and, consequently, LGL survival was demonstrated. In addition, we found that SOCS3 was down-modulated in LGL and unresponsive to IL-6 stimulation. By treating neoplastic LGLs with a demethylating agent, IL-6-mediated SOCS3 expression was restored with consequent P-STAT3 and myeloid cell leukemia-1 down-modulation. Methylation in the SOCS3 promoter was not detectable, suggesting that an epigenetic inhibition mechanism occurs at a different site. Our data indicate that loss of the inhibitor SOCS3 cooperates with IL-6 to maintain JAK/STAT pathway activation, thus contributing to leukemic LGL survival, and suggest a role of demethylating agents in the treatment of this disorder.
机译:在T细胞大颗粒淋巴细胞白血病中,JAK / STAT途径发生了改变。在所有患者中,白血病LGL均显示磷酸化STAT3(P-STAT3)上调,从而激活许多抗凋亡基因的表达。为了研究使用转录蛋白和功能分析检测维持STAT3异常磷酸化的机制,我们分析了白介素(IL)-6和细胞因子信号传导抑制因子3(SOCS3),这是诱导和抑制STAT3活化的JAK / STAT通路的两个关键因素,分别。我们显示,IL-6在患者外周血LGL耗尽的人群中高度表达和释放,这说明了信号转导过程。通过用特异性抗体中和IL-6或它的特异性受体,P-STAT3水平显着降低,从而证明了LGL的存活。此外,我们发现SOCS3在LGL中被下调并且对IL-6刺激无反应。通过用脱甲基剂处理赘生性LGL,可恢复IL-6介导的SOCS3表达,并随之降低P-STAT3和髓样细胞白血病1的表达。 SOCS3启动子中的甲基化是不可检测的,表明表观遗传抑制机制发生在不同的位置。我们的数据表明抑制剂SOCS3的丢失与IL-6协同作用以维持JAK / STAT通路的活化,从而有助于白血病LGL的存活,并表明脱甲基剂在治疗该疾病中的作用。

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