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首页> 外文期刊>Journal of cellular biochemistry. >Phosphorylation of serine 21 modulates the proliferation inhibitory more than the differentiation inducing effects of C/EBPα in K562 cells
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Phosphorylation of serine 21 modulates the proliferation inhibitory more than the differentiation inducing effects of C/EBPα in K562 cells

机译:丝氨酸21的磷酸化对K562细胞中C /EBPα的分化诱导作用的调节作用大于对C /EBPα的诱导分化作用。

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The CCAAT/enhancer binding protein α (C/EBPα) is a transcription factor required for differentiation of myeloid progenitors. In acute myeloid leukemia (AML) cells expressing the constitutively active FLT3-ITD receptor tyrosine kinase, MAP kinase-dependent phosphorylation of serine 21 (S21) inhibits the ability of C/EBPα to induce granulocytic differentiation. To assess whether this post-translational modification also modulates the activity of C/EBPα in BCR/ABL-expressing cells, we tested the biological effects of wild-type and mutant C/EBPα mimicking phosphorylated or non-phosphorylatable serine 21 (S21D and S21A, respectively) in K562 cells ectopically expressing tamoxifen-regulated C/EBPα-ER chimeric proteins. We show here that S21D C/EBPα-ER induced terminal granulocytic differentiation of K562 cells almost as well as wild-type C/EBPα-ER, while S21A C/EBPα-ER was less efficient. Furthermore, wild-type C/EBPα suppressed the proliferation and colony formation of K562 cells vigorously, while S21D and S21A C/EBPα mutants had more modest anti-proliferative effects. Both mutants were less effective than wild-type C/EBPα in suppressing endogenous E2F-dependent transactivation and bound less E2F-2 and/or E2F-3 proteins in anti-C/EBPα immunoprecipitates. Together, these findings suggest that mutation of S21 more than its phosphorylation inhibits the anti-proliferative effects of C/EBPα due to reduced interaction with or impaired regulation of the activity of E2F proteins. By contrast, phosphorylation of serine 21 appears to have a modest role in modulating the differentiation-inducing effects of C/EBPα in K562 cells.
机译:CCAAT /增强子结合蛋白α(C /EBPα)是分化髓样祖细胞所需的转录因子。在表达组成性活性FLT3-ITD受体酪氨酸激酶的急性髓性白血病(AML)细胞中,丝氨酸21(S21)的MAP激酶依赖性磷酸化抑制C /EBPα诱导粒细胞分化的能力。为了评估这种翻译后修饰是否还调节了表达BCR / ABL的细胞中C /EBPα的活性,我们测试了模拟磷酸化或不可磷酸化丝氨酸21(S21D和S21A)的野生型和突变体C /EBPα的生物学效应。分别在异位表达他莫昔芬调节的C /EBPα-ER嵌合蛋白的K562细胞中。我们在这里显示,S21D C /EBPα-ER几乎和野生型C /EBPα-ER一样,诱导了K562细胞的末端粒细胞分化,而S21A C /EBPα-ER的效率较低。此外,野生型C /EBPα强烈抑制了K562细胞的增殖和集落形成,而S21D和S21A C /EBPα突变体具有更适度的抗增殖作用。两种突变体在抑制内源性E2F依赖性反式激活方面均不如野生型C /EBPα有效,并且在抗C /EBPα免疫沉淀物中结合的E2F-2和/或E2F-3蛋白较少。总之,这些发现表明,由于与E2F蛋白活性的相互作用减弱或削弱,S21的突变与其磷酸化相比,抑制C /EBPα的抗增殖作用。相比之下,丝氨酸21的磷酸化似乎在调节K562细胞中C /EBPα的分化诱导作用中起适度作用。

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