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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Epigenetic alteration of SOCS family members is a possible pathogenetic mechanism in JAK2 wild type myeloproliferative diseases.
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Epigenetic alteration of SOCS family members is a possible pathogenetic mechanism in JAK2 wild type myeloproliferative diseases.

机译:SOCS家族成员的表观遗传学改变是JAK2野生型骨髓增生性疾病中可能的致病机制。

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摘要

In polycythemia vera (PV) and essential thrombocythemia (ET) specific JAK2 mutations constitutively activate the JAK-STAT pathway, explaining biologic findings such as endogenous erythroid colony (EECs) growth or PRV-1 RNA overexpression. Since these markers are detected also in JAK2 wild type patients, we hypothesized that, in these cases, the activation of the JAK-STAT pathway could be produced by a deregulation of the suppressor of cytokine signaling (SOCS) protein system. Eighty-one patients with PV and ET (53 adults and 28 children) were investigated for the methylation status of the SOCS-1, SOCS-2 and SOCS-3 CpG islands and for several myeloproliferative markers (including JAK2 and MPL mutations and clonality of hematopoiesis). SOCS-1 or SOCS-3 hypermethylation was identified in 23 patients and was associated with a significant decrease of SOCS-1 or SOCS-3 RNA and protein levels. The gene expression was restored by exposing cells to the demethylating agent 2-deoxyazacytidin. Interestingly, SOCS-1or SOCS-3 hypermethylation was detected in 6 female patients, proved negative for JAK2 or MPL mutations and exhibiting monoclonal hematopoiesis. In conclusion, SOCS-1 or SOCS-3 hypermethylation can activate the JAK-STAT signaling pathway in alternative or together with JAK2 mutations. These alterations might represent a potential therapeutic target.
机译:在真性红细胞增多症(PV)和原发性血小板增多症(ET)中,特定的JAK2突变可组成性激活JAK-STAT途径,从而解释了生物学发现,例如内源性红系集落(EEC)生长或PRV-1 RNA过表达。由于在JAK2野生型患者中也检测到了这些标记,因此我们假设在这些情况下,JAK-STAT途径的激活可能是由于细胞因子信号转导(SOCS)蛋白系统抑制因子的失控而产生的。调查了81例PV和ET患者(53名成人和28名儿童)的SOCS-1,SOCS-2和SOCS-3 CpG岛的甲基化状态以及几种骨髓增生标志物(包括JAK2和MPL突变以及沙门氏菌的克隆性)造血作用)。在23例患者中发现了SOCS-1或SOCS-3甲基化过高,与SOCS-1或SOCS-3 RNA和蛋白质水平的显着降低有关。通过将细胞暴露于脱甲基剂2-脱氧氮杂胞苷来恢复基因表达。有趣的是,在6名女性患者中检测到SOCS-1或SOCS-3甲基化过高,证明JAK2或MPL突变为阴性,并表现出单克隆造血作用。总之,SOCS-1或SOCS-3的高甲基化可以交替或与JAK2突变一起激活JAK-STAT信号通路。这些改变可能代表潜在的治疗目标。

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