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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Dimer-tetramer transition controls RUNX1/ETO leukemogenic activity.
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Dimer-tetramer transition controls RUNX1/ETO leukemogenic activity.

机译:二聚体-四聚体过渡控制RUNX1 / ETO致白血病活性。

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摘要

RUNX1/ETO, the fusion protein resulting from the chromosomal translocation t(8;21), is one of the most frequent translocation products in acute myeloid leukemia. Several in vitro and in vivo studies have shown that the homo-tetramerization domain of ETO, the nervy homology region 2 (NHR2), is essential for RUNX1/ETO oncogenic activity. We analyzed the energetic contribution of individual amino acids within the NHR2 to RUNX1/ETO dimer-tetramer transition and found a clustered area of 5 distinct amino acids with strong contribution to the stability of tetramers. Substitution of these amino acids abolishes tetramer formation without affecting dimer formation. Similar to RUNX1/ETO monomers, dimers failed to bind efficiently to DNA and to alter expression of RUNX1-dependent genes. RUNX1/ETO dimers do not block myeloid differentiation, are unable to enhance the self-renewal capacity of hematopoietic progenitors, and fail to induce leukemia in a murine transplantation model. Our data reveal the existence of an essential structural motif (hot spot) at the NHR2 dimer-tetramer interface, suitable for a molecular intervention in t(8;21) leukemias.
机译:RUNX1 / ETO是由染色体易位t(8; 21)产生的融合蛋白,是急性髓细胞性白血病中最常见的易位产物之一。几个体外和体内研究表明,ETO的同源四聚结构域,神经同源区2(NHR2),对于RUNX1 / ETO致癌活性至关重要。我们分析了NHR2中单个氨基酸对RUNX1 / ETO二聚体-四聚体过渡的能量贡献,发现5个不同氨基酸的聚集区域对四聚体的稳定性有很强的贡献。这些氨基酸的取代消除了四聚体的形成而不影响二聚体的形成。与RUNX1 / ETO单体相似,二聚体无法有效结合到DNA并改变RUNX1依赖性基因的表达。 RUNX1 / ETO二聚体不阻止骨髓分化,不能增强造血祖细胞的自我更新能力,并且在鼠移植模型中不能诱发白血病。我们的数据揭示了NHR2二聚体-四聚体界面上存在必不可少的结构基序(热点),适用于t(8; 21)白血病的分子干预。

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