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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Functional features of RUNX1 mutants in acute transformation of chronic myeloid leukemia and their contribution to inducing murine full-blown leukemia
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Functional features of RUNX1 mutants in acute transformation of chronic myeloid leukemia and their contribution to inducing murine full-blown leukemia

机译:RUNX1突变体在慢性粒细胞白血病急性转化中的功能特征及其对诱导鼠成熟白血病的贡献

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The BCR-ABL fusion protein generated by t(9;22)(q34;q11) in chronic myeloid leukemia (CML) plays an essential role in the pathogenesis of the myeloproliferative disorder status at the chronic phase of the disease, but progression from the chronic phase to blast crisis (BC) is believed to require additional mutations. To explore the underlying mechanisms for BC, which is characterized by a blockage of blood cell differentiation, we screened several genes crucial to hematopoiesis and identified 10 types of mutations in RUNX1 among 11 of 85 (12.9%) patients with acute transformation of CML. Most of the mutations occurred in the runt homology domain, including H78Q, W79C, R139G, D171G, R174Q, L71fs-ter94, and V91fs-ter94. Further studies indicated that RUNX1 mutants not only exhibited decreased transactivation activity but also had an inhibitory effect on the WT RUNX1. To investigate the leukemogenic effect of mutated RUNX1, H78Q and V91fs-ter94 were transduced into 32D cells or BCRABL-harboring murine cells, respectively. Consistent with the myeloblastic features of advanced CML patients with RUNX1 mutations, H78Q and V91fs-ter94 disturbed myeloid differentiation and induced a BC or accelerated phase-like phenotype in mice. These results suggest that RUNX1 abnormalities may promote acute myeloid leukemic transformation in a subset of CML patients.
机译:由t(9; 22)(q34; q11)在慢性粒细胞白血病(CML)中产生的BCR-ABL融合蛋白在该疾病的慢性期的骨髓增生性疾病状态的发病机理中起着至关重要的作用,但从据信,慢性阶段至爆炸危机(BC)需要其他突变。为了探讨以血细胞分化受阻为特征的BC的潜在机制,我们筛选了对造血至关重要的几个基因,并在85例CML急性转化患者中的11例(12.9%)中确定了RUNX1的10种突变类型。大多数突变发生在矮子同源域中,包括H78Q,W79C,R139G,D171G,R174Q,L71fs-ter94和V91fs-ter94。进一步的研究表明,RUNX1突变体不仅表现出降低的反式激活活性,而且对WT RUNX1具有抑制作用。为了研究突变的RUNX1的致白血病作用,将H78Q和V91fs-ter94分别转导至32D细胞或携带BCRABL的鼠细胞中。与具有RUNX1突变的晚期CML患者的粒细胞特征一致,H78Q和V91fs-ter94干扰了小鼠的骨髓分化,并诱导了BC或加速相样表型。这些结果表明,RUNX1异常可能促进部分CML患者的急性髓样白血病转化。

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