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GSK3-mediated MAF phosphorylation in multiple myeloma as a potential therapeutic target

机译:GSK3介导的多发性骨髓瘤MAF磷酸化作为潜在的治疗靶点

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Multiple myeloma (MM) is an incurable haematological malignancy characterised by the proliferation of mature antibody-secreting plasma B cells in the bone marrow. MM can arise from initiating translocations, of which the musculoaponeurotic fibrosarcoma (MAF) family is implicated in ~5%. MMs bearing Maf translocations are of poor prognosis. These translocations are associated with elevated Maf expression, including c-MAF , MAFB and MAFA , and with t(14;16) and t(14;20) translocations, involving c-MAF and MAFB , respectively. c-MAF is also overexpressed in MM through MEK/ERK activation, bringing the number of MMs driven by the deregulation of a Maf gene close to 50%. Here we demonstrate that MAFB and c-MAF are phosphorylated by the Ser/Thr kinase GSK3 in human MM cell lines. We show that LiCl-induced GSK3 inhibition targets these phosphorylations and specifically decreases proliferation and colony formation of Maf-expressing MM cell lines. Interestingly, bortezomib induced stabilisation of Maf phosphorylation, an observation that could explain, at least partially, the low efficacy of bortezomib for patients carrying Maf translocations. Thus, GSK3 inhibition could represent a new therapeutic approach for these patients.
机译:多发性骨髓瘤(MM)是一种无法治愈的血液系统恶性肿瘤,其特征是骨髓中成熟的分泌抗体的血浆B细胞增殖。 MM可能是由起始易位引起的,其中肌腱膜纤维肉瘤(MAF)家族约占5%。带有Maf易位的MM的预后较差。这些易位与升高的Maf表达有关,包括c-MAF,MAFB和MAFA,并且与t(14; 16)和t(14; 20)易位有关,分别涉及c-MAF和MAFB。 c-MAF也通过MEK / ERK激活在MM中过表达,这使得由Maf基因失调驱动的MM数量接近50%。在这里,我们证明人MM细胞系中的MAFB和c-MAF被Ser / Thr激酶GSK3磷酸化。我们表明,LiCl诱导的GSK3抑制靶向这些磷酸化,并特别降低了表达Maf的MM细胞系的增殖和集落形成。有趣的是,硼替佐米诱导了Maf磷酸化的稳定,这一观察结果至少可以部分解释硼替佐米对携带Maf易位的患者的低疗效。因此,GSK3抑制可能代表这些患者的一种新的治疗方法。

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