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Phosphorylation of the Leukemic Oncoprotein EVI1 on Serine 196 Modulates DNA Binding, Transcriptional Repression and Transforming Ability

机译:丝氨酸196上的白血病癌蛋白EVI1的磷酸化调节DNA结合,转录抑制和转化能力。

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The EVI1 (ecotropic viral integration site 1) gene at 3q26 codes for a transcriptional regulator with an essential role in haematopoiesis. Overexpression of EVI1 in acute myeloid leukaemia (AML) is frequently associated with 3q26 rearrangements and confers extremely poor prognosis. EVI1 mediates transcriptional regulation, signalling, and epigenetic modifications by interacting with DNA, proteins and protein complexes. To explore to what extent protein phosphorylation impacts on EVI1 functions, we analysed endogenous EVI1 protein from a high EVI1 expressing Fanconi anaemia (FA) derived AML cell line. Mass spectrometric analysis of immunoprecipitated EVI1 revealed phosphorylation at serine 196 (S196) in the sixth zinc finger of the N-terminal zinc finger domain. Mutated EVI1 with an aspartate substitution at serine 196 (S196D), which mimics serine phosphorylation of this site, exhibited reduced DNA-binding and transcriptional repression from a gene promotor selectively targeted by the N-terminal zinc finger domain. Forced expression of the S196D mutant significantly reduced EVI1 mediated transformation of Rat1 fibroblasts. While EVI1-mediated serial replating of murine haematopoietic progenitors was maintained by EVI1-S196D, this was associated with significantly higher Evi1-trancript levels compared with WT-EVI1 or EVI1-S196A, mimicking S196 non-phosphorylated EVI1. These data suggest that EVI1 function is modulated by phosphorylation of the first zinc finger domain.
机译:3q26处的EVI1(促性病毒整合位点1)基因编码在造血过程中起重要作用的转录调节子。 EVI1在急性髓细胞性白血病(AML)中的过表达通常与3q26重排有关,并且预后极差。 EVI1通过与DNA,蛋白质和蛋白质复合物相互作用来介导转录调控,信号传导和表观遗传修饰。为了探讨蛋白质磷酸化对EVI1功能的影响程度,我们分析了来自高表达Fanconi贫血(FA)的AML细胞系中高表达EVI1的内源性EVI1蛋白。免疫沉淀EVI1的质谱分析显示N端锌指结构域的第六个锌指中的丝氨酸196(S196)磷酸化。模仿该位点丝氨酸磷酸化的突变体EVI1在丝氨酸196(S196D)处具有天冬氨酸取代,显示出DNA结合减少和来自被N末端锌指结构域选择性靶向的基因启动子的转录抑制。 S196D突变体的强制表达显着减少了EVI1介导的Rat1成纤维细胞转化。尽管EVI1-S196D维持了EVI1介导的小鼠造血祖细胞的连续重铺,但与WT-EVI1或EVI1-S196A相比,与S196非磷酸化EVI1相似,这与Evi1转录水平显着相关。这些数据表明,EVI1功能受第一个锌指结构域的磷酸化作用的调节。

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