首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Cbfb/Runx1 repression-independent blockage of differentiation and accumulation of Csf2rb-expressing cells by Cbfb-MYH11.
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Cbfb/Runx1 repression-independent blockage of differentiation and accumulation of Csf2rb-expressing cells by Cbfb-MYH11.

机译:Cbfb-MYH11抑制Cbfb / Runx1阻遏独立的Csf2rb表达细胞分化和积累。

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摘要

It is known that CBFB-MYH11, the fusion gene generated by inversion of chromosome 16 in human acute myeloid leukemia, is causative for oncogenic transformation. However, the mechanism by which CBFB-MYH11 initiates leukemogenesis is not clear. Previously published reports showed that CBFB-MYH11 dominantly inhibits RUNX1 and CBFB, and such inhibition has been suggested as the mechanism for leukemogenesis. Here we show that Cbfb-MYH11 caused Cbfb/Runx1 repression-independent defects in both primitive and definitive hematopoiesis. During primitive hematopoiesis, Cbfb-MYH11 delayed differentiation characterized by sustained expression of Gata2, Il1rl1, and Csf2rb, a phenotype not found in Cbfb and Runx1 knockout mice. Expression of Cbfb-MYH11 in the bone marrow induced the accumulation of abnormal progenitor-like cells expressing Csf2rb in preleukemic mice. The expression of all 3 genes was detected in most human and murine CBFB-MYH11(+) leukemia samples. Interestingly, Cbfb-MYH11(+) preleukemic progenitors and leukemia-initiating cells did not express Csf2rb, although the majority of leukemia cells in our Cbfb-MYH11 knockin mice were Csf2rb(+). Therefore Csf2rb can be used as a negative selection marker to enrich preleukemic progenitor cells and leukemia-initiating cells from Cbfb-MYH11 mice. These results suggest that Cbfb/Runx1 repression-independent activities contribute to leukemogenesis by Cbfb-MYH11.
机译:已知CBFB-MYH11是人急性髓细胞性白血病中由16号染色体倒置产生的融合基因,是致癌性转化的原因。但是,CBFB-MYH11引发白血病发生的机制尚不清楚。先前发表的报道表明CBFB-MYH11显着抑制RUNX1和CBFB,并且这种抑制被认为是白血病发生的机制。在这里,我们显示Cbfb-MYH11在原始和定型造血过程中均导致Cbfb / Runx1抑制独立的缺陷。在原始造血过程中,Cbfb-MYH11延迟了分化,其特征是持续表达Gata2,Il1rl1和Csf2rb,这是在Cbfb和Runx1基因敲除小鼠中未发现的表型。 Cbfb-MYH11在骨髓中的表达诱导白血病前小鼠中表达Csf2rb的异常祖细胞样细胞的积累。在大多数人类和小鼠CBFB-MYH11(+)白血病样本中检测到所有3个基因的表达。有趣的是,尽管我们Cbfb-MYH11敲入小鼠中的大多数白血病细胞是Csf2rb(+),但Cbfb-MYH11(+)白血病前祖细胞和白血病起始细胞并不表达Csf2rb。因此,Csf2rb可用作阴性选择标记,可丰富Cbfb-MYH11小鼠的白血病前祖细胞和白血病起始细胞。这些结果表明Cbfb / Runx1抑制独立活动有助于Cbfb-MYH11的白血病发生。

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