Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University, Kumamoto, Japan.
Gastrointestinal Cancer Biology, International Research Center of Medical Sciences, Kumamoto University, Kumamoto, 860-0811, Japan.
Leukemia. 2024 Jun;38(6):1275-1286. doi: 10.1038/s41375-024-02276-w. Epub 2024 May 11.
TIF1β/KAP1/TRIM28, a chromatin modulator, both represses and activates the transcription of genes in normal and malignant cells. Analyses of datasets on leukemia patients revealed that the expression level of TIF1β was increased in patients with chronic myeloid leukemia at the blast crisis and acute myeloid leukemia. We generated a BCR::ABL1 conditional knock-in (KI) mouse model, which developed aggressive myeloid leukemia, and demonstrated that the deletion of the Tif1β gene inhibited the progression of myeloid leukemia and showed longer survival than that in BCR::ABL1 KI mice, suggesting that Tif1β drove the progression of BCR::ABL1-induced leukemia. In addition, the deletion of Tif1β sensitized BCR::ABL1 KI leukemic cells to dasatinib. The deletion of Tif1β decreased the expression levels of TIF1β-target genes and chromatin accessibility peaks enriched with the Fosl1-binding motif in BCR::ABL1 KI stem cells. TIF1β directly bound to the promoters of proliferation genes, such as FOSL1, in human BCR::ABL1 cells, in which TIF1β and FOSL1 bound to adjacent regions of chromatin. Since the expression of Fosl1 was critical for the enhanced growth of BCR::ABL1 KI cells, Tif1β and Fosl1 interacted to activate the leukemic transcriptional program in and cellular function of BCR::ABL1 KI stem cells and drove the progression of myeloid leukemia.
TIF1β/KAP1/TRIM28 是一种染色质调节剂,可在正常和恶性细胞中抑制和激活基因的转录。对白血病患者数据集的分析表明,慢性髓性白血病急变期和急性髓性白血病患者的 TIF1β 表达水平升高。我们生成了一个 BCR::ABL1 条件性敲入(KI)小鼠模型,该模型发展为侵袭性髓性白血病,并且表明 Tif1β 基因的缺失抑制了髓性白血病的进展,并比 BCR::ABL1 KI 小鼠具有更长的存活时间,表明 Tif1β 驱动了 BCR::ABL1 诱导的白血病的进展。此外,Tif1β 的缺失使 BCR::ABL1 KI 白血病细胞对达沙替尼敏感。Tif1β 的缺失降低了 BCR::ABL1 KI 干细胞中 TIF1β 靶基因和富含 Fosl1 结合基序的染色质可及性峰的表达水平。TIF1β 直接结合到人类 BCR::ABL1 细胞中增殖基因(如 FOSL1)的启动子上,在这些细胞中,TIF1β 和 FOSL1 结合到染色质的相邻区域。由于 Fosl1 的表达对于增强 BCR::ABL1 KI 细胞的生长至关重要,因此 Tif1β 和 Fosl1 相互作用激活了 BCR::ABL1 KI 干细胞中的白血病转录程序和细胞功能,并驱动了髓性白血病的进展。