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The Pluripotency Regulator PRDM14 Requires Hematopoietic Regulator CBFA2T3 to Initiate Leukemia in Mice

机译:多能调节剂PRDM14需要造血调节剂CBFA2T3在小鼠中引发白血病

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摘要

PR domain-containing 14 (Prdm14) is a pluripotency regulator central to embryonic stem cell identity and primordial germ cell specification. Genomic regions containing PRDM14 are often amplified leading to misexpression in human cancer. Prdm14 expression in mouse hematopoietic stem cells (HSC) leads to progenitor cell expansion prior to the development of T-cell acute lymphoblastic leukemia (T-ALL), consistent with PRDM14's role in cancer initiation. Here, we demonstrate mechanistic insight into PRDM14-driven leukemias in vivo. Mass spectrometry revealed novel PRDM14-protein interactions including histone H1, RNA-binding proteins, and the master hematopoietic regulator CBFA2T3. In mouse leukemic cells, CBFA2T3 and PRDM14 associate independently of the related ETO family member CBFA2T2, PRDM14's primary protein partner in pluripotent cells. CBFA2T3 plays crucial roles in HSC self-renewal and lineage commitment, and participates in oncogenic translocations in acute myeloid leukemia. These results suggest a model whereby PRDM14 recruits CBFA2T3 to DNA, leading to gene misregulation causing progenitor cell expansion and lineage perturbations preceding T-ALL development. Strikingly, Prdm14induced T-ALL does not occur in mice deficient for Cbfa2t3, demonstrating that Cbfa2t3 is required for leukemogenesis. Moreover, T-ALL develops in Cbfa2t3 heterozygotes with a significantly longer latency, suggesting that PRDM14-associated T-ALL is sensitive to Cbfa2t3 levels. Our study highlights how an oncogenic protein uses a native protein in progenitor cells to initiate leukemia, providing insight into PRDM14-driven oncogenesis in other cell types.
机译:含PR结构域14(PRDM14)是多能性调节剂至胚胎干细胞同一性和原始生殖细胞规范的中心。含有PRDM14的基因组区域通常被扩增导致人癌中的Misexpression。在小鼠造血干细胞(HSC)中的PRDM14表达导致祖细胞膨胀,在发育T细胞急性淋巴细胞白血病(T-All)之前,与PRDM14在癌症开始中的作用一致。在这里,我们展示了在体内的PRDM14驱动的白血病的机制洞察力。质谱显示新型PRDM14-蛋白质相互作用,包括组蛋白H1,RNA结合蛋白和母造血调节剂CBFA2T3。在小鼠白血病细胞中,CBFA2T3和PRDM14独立于相关ETO系列成员CBFA2T2,PRDM14在多能细胞中的主要蛋白质伴侣。 CBFA2T3在HSC自我更新和谱系承诺中起着至关重要的作用,并参与急性髓鞘白血病中的致癌易位性。这些结果表明了PRDM14募集CBFA2T3至DNA的模型,导致基因误导导致祖细胞膨胀和在T-all发育前的血管扰动。尖锐的是,PRDM14诱导的T-all在缺乏CBFA2T3的小鼠中不会发生,证明白血病需要CBFA2T3。此外,T-all在CBFA2T3杂小精体中发育,潜水明显更长,表明PRDM14相关的T-全部对CBFA2T3水平敏感。我们的研究突出了致癌蛋白如何在祖细胞中使用天然蛋白来引发白血病,在其他细胞类型中提供对PRDM14驱动的肿瘤发生的洞察力。

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