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在t(8;21)髓系白血病中,髓系主要调节转录因子PU.1被AML1-ETO失活。

The myeloid master regulator transcription factor PU.1 is inactivated by AML1-ETO in t(8;21) myeloid leukemia.

作者信息

Vangala Rajani K, Heiss-Neumann Marion S, Rangatia Janki S, Singh Sheo M, Schoch Claudia, Tenen Daniel G, Hiddemann Wolfgang, Behre Gerhard

机构信息

Department of Internal Medicine III, University Hospital Grosshadern, Ludwig-Maximilians-University Munich and GSF-National Research Center for Environment and Health, Germany.

出版信息

Blood. 2003 Jan 1;101(1):270-7. doi: 10.1182/blood-2002-04-1288. Epub 2002 Aug 29.

Abstract

The transcription factor PU.1 plays a pivotal role in normal myeloid differentiation. PU.1(-/-) mice exhibit a complete block in myeloid differentiation. Heterozygous PU.1 mutations were reported in some patients with acute myeloid leukemia (AML), but not in AML with translocation t(8;21), which gives rise to the fusion gene AML1-ETO. Here we report a negative functional impact of AML1-ETO on the transcriptional activity of PU.1. AML1-ETO physically binds to PU.1 in t(8;21)(+) Kasumi-1 cells. AML1-ETO binds to the beta(3)beta(4) region in the DNA-binding domain of PU.1 and displaces the coactivator c-Jun from PU.1, thus down-regulating the transcriptional activity of PU.1. This physical interaction of AML1-ETO and PU.1 did not abolish the DNA-binding capacity of PU.1. AML1-ETO down-regulates the transactivation capacity of PU.1 in myeloid U937 cells, and the expression levels of PU.1 target genes in AML French-American-British (FAB) subtype M2 patients with t(8;21) were lower than in patients without t(8;21). Conditional expression of AML1-ETO causes proliferation in mouse bone marrow cells and inhibits antiproliferative function of PU.1. Overexpression of PU.1, however, differentiates AML1-ETO-expressing Kasumi-1 cells to the monocytic lineage. Thus, the function of PU.1 is down-regulated by AML1-ETO in t(8;21) myeloid leukemia, whereas overexpression of PU.1 restores normal differentiation.

摘要

转录因子PU.1在正常髓系分化过程中发挥着关键作用。PU.1(-/-)小鼠在髓系分化方面表现出完全阻滞。在一些急性髓系白血病(AML)患者中报道了杂合性PU.1突变,但在伴有t(8;21)易位(该易位产生融合基因AML1-ETO)的AML患者中未发现此类突变。在此,我们报道AML1-ETO对PU.1转录活性具有负面功能影响。在t(8;21)(+) Kasumi-1细胞中,AML1-ETO与PU.1发生物理性结合。AML1-ETO结合至PU.1 DNA结合结构域中的β(3)β(4)区域,并将共激活因子c-Jun从PU.1上置换下来,从而下调PU.1的转录活性。AML1-ETO与PU.1的这种物理性相互作用并未消除PU.1的DNA结合能力。AML1-ETO下调髓系U937细胞中PU.1的反式激活能力,并且伴有t(8;21)的AML法国-美国-英国(FAB)亚型M2患者中PU.1靶基因的表达水平低于无t(8;21)的患者。AML1-ETO的条件性表达导致小鼠骨髓细胞增殖,并抑制PU.1的抗增殖功能。然而,PU.1的过表达可使表达AML1-ETO的Kasumi-1细胞向单核细胞系分化。因此,在t(8;21)髓系白血病中,PU.1的功能被AML1-ETO下调,而PU.1的过表达可恢复正常分化。

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