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The TAL1/SCL Transcription Factor Regulates Cell Cycle Progression and Proliferation in Differentiating Murine Bone Marrow Monocyte Precursors

机译:TAL1 / SCL转录因子调节分化小鼠骨髓单核细胞前体的细胞周期进程和增殖。

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摘要

Monocytopoiesis involves the stepwise differentiation in the bone marrow (BM) of common myeloid precursors (CMPs) to monocytes. The basic helix-loop-helix transcription factor TAL1/SCL plays a critical role in other hematopoietic lineages, and while it had been reported to be expressed by BM-derived macrophages, its role in monocytopoiesis had not been elucidated. Using cell explant models of monocyte/macrophage (MM) differentiation, one originating with CMPs and the other from more committed precursors, we characterized the phenotypic and molecular consequences of inactivation of Tal1 expression ex vivo. While Tal1 knockout had minimal effects on cell survival and slightly accelerated terminal differentiation, it profoundly inhibited cell proliferation and decreased entry into and traversal of the G1 and S phases. In conjunction, steady-state levels of p16(Ink4a) mRNA were increased and those of Gata2 mRNA decreased. Chromatin immunoprecipitation analysis demonstrated the association of Tal1 and E47, one of its E protein DNA-binding partners, with an E box-GATA sequence element in intron 4 of the Gata2 gene and with three E boxes upstream of p16(Ink4a). Finally, wild-type Tal1, but not a DNA binding-defective mutant, rescued the proliferative defect in Tal1-null MM precursors. These results document the importance of this transcription factor in cell cycle progression and proliferation during monocytopoiesis and the requirement for direct DNA binding in these processes.
机译:单核细胞生成涉及普通髓样前体(CMP)在骨髓(BM)中逐步分化为单核细胞。基本的螺旋-环-螺旋转录因子TAL1 / SCL在其他造血谱系中起关键作用,尽管据报道它是由BM衍生的巨噬细胞表达的,但尚未阐明其在单核细胞生成中的作用。使用单核细胞/巨噬细胞(MM)分化的细胞外植体模型,一种起源于CMP,另一种起源于更确定的前体,我们表征了离体Tal1表达失活的表型和分子后果。虽然Tal1基因敲除对细胞存活的影响最小,并且略微加速了终末分化,但它深刻地抑制了细胞增殖,并减少了进入和穿越G1和S期的机会。同时,p16(Ink4a)mRNA的稳态水平升高,而Gata2 mRNA的稳态水平降低。染色质免疫沉淀分析表明,Tal1和E47是其E蛋白DNA结合伴侣之一,与Gata2基因内含子4中的E box-GATA序列元件和p16(Ink4a)上游的三个E box关联。最后,野生型Tal1,但不是DNA结合缺陷型突变体,挽救了Tal1-null MM前体中的增殖缺陷。这些结果证明了该转录因子在单核细胞生成过程中细胞周期进程和增殖中的重要性,以及在这些过程中直接结合DNA的要求。

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