首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Reduced PU.1 expression causes myeloid progenitor expansion and increased leukemia penetrance in mice expressing PML-RARα
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Reduced PU.1 expression causes myeloid progenitor expansion and increased leukemia penetrance in mice expressing PML-RARα

机译:PU.1表达降低导致表达PML-RARα的小鼠骨髓祖细胞扩增和白血病渗透率增加

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摘要

PU.1 is a member of the ETS family of transcription factors that is known to be important for hematopoietic development. Recently, haploinsufficiency for PU.1 has been shown to cause a shift in myelomonocytic progenitor fate toward the myeloid lineage. We have previously shown that transgenic mice expressing PML-RARα (PR) and RARα-PML frequently develop acute promyelocytic leukemia (APL) in association with a large (>20 Mb) interstitial deletion of chromosome 2 that includes PU.1. To directly assess the relevance of levels of expression of PU.1 for leukemia progression, we bred hCG-PR mice with PU.1+/- mice and assessed their phenotype. Young, nonleukemic hCG-PR × PU.1+/- mice developed splenomegaly because of the abnormal expansion of myeloid cells in their spleens. hCG-PR × PU.1+/- mice developed a typical APL syndrome after a long latent period, but the penetrance of disease was 84%, compared with 7% in hCG-PR × PU.1+/+ mice (P < 0.0001). The residual PU.1 allele in hCG-PR × PU.1+/- APL cells was expressed, and complete exonic resequencing revealed no detectable mutations in nine of nine samples. However, PR expression in U937 myelomonocytic cells and primary murine myeloid bone marrow cells caused a reduction in PU.1 mRNA levels. Therefore, the loss of one copy of PU.1 through a deletional mechanism, plus down-regulation of the residual allele caused by PR expression, may synergize to expand the pool of myeloid progenitors that are susceptible to transformation, increasing the penetrance of APL.
机译:PU.1是ETS转录因子家族的成员,众所周知,它对造血发育至关重要。最近,PU.1的单倍剂量不足已显示出导致单核细胞祖细胞命运向髓系谱系转移。我们以前已经表明,表达PML-RARα(PR)和RARα-PML的转基因小鼠经常发生急性早幼粒细胞白血病(APL),并伴随着大的(> 20 Mb)间质缺失2号染色体,包括PU.1。为了直接评估PU.1表达水平与白血病进展的相关性,我们将hCG-PR小鼠与PU.1 +/- 小鼠进行了繁殖,并评估了它们的表型。年轻的非白血病hCG-PR×PU.1 +/- 小鼠由于脾脏中髓样细胞的异常扩增而发展为脾肿大。 hCG-PR×PU.1 +/- 小鼠在潜伏期长后出现典型的APL综合征,但疾病的渗透率为84%,而hCG-PR×PU.1为7%。 + / + 小鼠(P <0.0001)。表达了hCG-PR×PU.1 +/- APL细胞中残留的PU.1等位基因,并且完整的外显子重测序显示9个样品中的9个没有检测到突变。但是,U937骨髓单核细胞和原代鼠骨髓细胞中的PR表达导致PU.1 mRNA水平降低。因此,通过删除机制丢失PU.1的一个拷贝,再加上PR表达引起的残留等位基因的下调,可能会协同作用,扩大易于转化的髓样祖细胞库,从而增加APL的渗透性。

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