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首页> 外文期刊>Molecular and Cellular Biology >Cooperation of Cytokine Signaling with Chimeric Transcription Factors in Leukemogenesis: PML-Retinoic Acid Receptor Alpha Blocks Growth Factor-Mediated Differentiation
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Cooperation of Cytokine Signaling with Chimeric Transcription Factors in Leukemogenesis: PML-Retinoic Acid Receptor Alpha Blocks Growth Factor-Mediated Differentiation

机译:细胞因子信号传导与嵌合转录因子在白血病发生中的合作:PML-视黄酸受体α阻止生长因子介导的分化。

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We utilized a mouse model of acute promyelocytic leukemia (APL) to investigate how aberrant activation of cytokine signaling pathways interacts with chimeric transcription factors to generate acute myeloid leukemia. Expression in mice of the APL-associated fusion, PML-RARA, initially has only modest effects on myelopoiesis. Whereas treatment of control animals with interleukin-3 (IL-3) resulted in expanded myelopoiesis without a block in differentiation, PML-RARA abrogated differentiation that normally characterizes the response to IL-3. Retroviral transduction of bone marrow with an IL-3-expressing retrovirus revealed that IL-3 and promyelocytic leukemia-retinoic acid receptor alpha (PML-RARα) combined to generate a lethal leukemia-like syndrome in <21 days. We also observed that a constitutively activated mutant IL-3 receptor, βcV449E, cooperated with PML-RARα in leukemogenesis, whereas a different activated mutant, βcI374N, did not. Analysis of additional mutations introduced into βcV449E showed that, although tyrosine phosphorylation of βc is necessary for cooperation, the Src homology 2 domain-containing transforming protein binding site is dispensable. Our results indicate that chimeric transcription factors can block the differentiative effects of growth factors. This combination can be potently leukemogenic, but the particular manner in which these types of mutations interact determines the ability of such combinations to generate acute myeloid leukemia.
机译:我们利用急性早幼粒细胞白血病(APL)的小鼠模型来研究细胞因子信号传导途径的异常激活如何与嵌合转录因子相互作用以产生急性髓样白血病。 APL相关融合蛋白 PML-RARA 在小鼠中的表达最初仅对骨髓生成有中等程度的影响。对照动物用白介素3(IL-3)的治疗导致骨髓生成扩大,而没有分化障碍,而 PML-RARA 则消除了通常表现为对IL-3应答特征的分化。用表达IL-3的逆转录病毒对骨髓进行逆转录病毒转导显示,IL-3和早幼粒细胞白血病-视黄酸受体α(PML-RARα)在不到21天的时间内联合产生了致命的白血病样综合征。我们还观察到,一个组成型激活的突变体IL-3受体β c V449E与PML-RARα在白血病发生中协同作用,而另一个激活的突变体β c I374N起作用。不。对β c V449E中引入的其他突变的分析表明,尽管β c 的酪氨酸磷酸化对于协同作用是必需的,但含Src同源2域的转化蛋白结合位点是必不可少的。我们的结果表明,嵌合转录因子可以阻断生长因子的分化作用。该组合可能是致白血病的,但是这些类型的突变相互作用的特定方式决定了此类组合产生急性髓细胞性白血病的能力。

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