Department of Medicine and.
Department of Biochemistry and Molecular Biology, UF Health Cancer Center, University of Florida, Gainesville, FL.
Blood. 2021 Feb 4;137(5):610-623. doi: 10.1182/blood.2019004688.
This study was conducted to determine the dosage effect of c-Myc on hematopoiesis and its distinct role in mediating the Wnt/β-catenin pathway in hematopoietic stem cell (HSC) and bone marrow niche cells. c-Myc haploinsufficiency led to ineffective hematopoiesis by inhibiting HSC self-renewal and quiescence and by promoting apoptosis. We have identified Nr4a1, Nr4a2, and Jmjd3, which are critical for the maintenance of HSC functions, as previously unrecognized downstream targets of c-Myc in HSCs. c-Myc directly binds to the promoter regions of Nr4a1, Nr4a2, and Jmjd3 and regulates their expression. Our results revealed that Nr4a1 and Nr4a2 mediates the function of c-Myc in regulating HSC quiescence, whereas all 3 genes contribute to the function of c-Myc in the maintenance of HSC survival. Adenomatous polyposis coli (Apc) is a negative regulator of the Wnt/β-catenin pathway. We have provided the first evidence that Apc haploinsufficiency induces a blockage of erythroid lineage differentiation through promoting secretion of IL6 in bone marrow endothelial cells. We found that c-Myc haploinsufficiency failed to rescue defective function of Apc-deficient HSCs in vivo but it was sufficient to prevent the development of severe anemia in Apc-heterozygous mice and to significantly prolong the survival of those mice. Furthermore, we showed that c-Myc-mediated Apc loss induced IL6 secretion in endothelial cells, and c-Myc haploinsufficiency reversed the negative effect of Apc-deficient endothelial cells on erythroid cell differentiation. Our studies indicate that c-Myc has a context-dependent role in mediating the function of Apc in hematopoiesis.
这项研究旨在确定 c-Myc 对造血的剂量效应及其在调节造血干细胞(HSC)和骨髓龛细胞中的 Wnt/β-catenin 通路中的独特作用。c-Myc 杂合不足通过抑制 HSC 自我更新和静止以及促进细胞凋亡导致无效造血。我们已经确定了 Nr4a1、Nr4a2 和 Jmjd3,它们是维持 HSC 功能的关键,作为 c-Myc 在 HSCs 中的以前未被识别的下游靶标。c-Myc 直接与 Nr4a1、Nr4a2 和 Jmjd3 的启动子区域结合,并调节它们的表达。我们的结果表明,Nr4a1 和 Nr4a2 介导了 c-Myc 在调节 HSC 静止中的功能,而这 3 个基因都有助于 c-Myc 在维持 HSC 存活中的功能。腺瘤性结肠息肉病(APC)是 Wnt/β-catenin 通路的负调节剂。我们首次提供证据表明,APC 杂合不足通过促进骨髓内皮细胞中 IL6 的分泌诱导红系谱系分化的阻滞。我们发现,c-Myc 杂合不足不能挽救 Apc 缺陷 HSCs 在体内的功能缺陷,但足以防止 Apc 杂合子小鼠发生严重贫血,并显著延长这些小鼠的存活时间。此外,我们表明,c-Myc 介导的 Apc 缺失诱导内皮细胞中 IL6 的分泌,而 c-Myc 杂合不足逆转了 Apc 缺陷内皮细胞对红细胞分化的负效应。我们的研究表明,c-Myc 在调节造血中的 Apc 功能方面具有上下文依赖性作用。