Thompson Zanshé, Anderson Georgina A, Hernandez Marco, Alfaro Quinde Carlos, Marchione Alissa, Rodriguez Melanie, Gabriel Seth, Binder Vera, Taylor Alison M, Kathrein Katie L
University of South Carolina, Department of Biomedical Engineering, Columbia, SC, USA.
University of South Carolina, Department of Biological Sciences, Columbia, SC, USA.
iScience. 2024 Jul 15;27(8):110521. doi: 10.1016/j.isci.2024.110521. eCollection 2024 Aug 16.
Defining the mechanisms that regulate stem cell maintenance, proliferation, and differentiation is critical for identifying therapies for improving stem cell function under stress. Here, we have identified the tumor suppressor, inhibitor of growth 4 (Ing4), as a critical regulator of hematopoietic stem cell (HSC) homeostasis. Cancer cell line models with Ing4 deficiency have shown that Ing4 functions as a tumor suppressor, in part, due to Ing4-mediated regulation of several major signaling pathways, including c-Myc. In HSCs, we show Ing4 deficiency promotes gene expression signatures associated with activation, yet HSCs are arrested in G, expressing several markers of quiescence. Functionally, Ing4-deficient HSCs demonstrate robust regenerative capacity following transplantation. Our findings suggest Ing4 deficiency promotes a poised state in HSCs, where they appear transcriptionally primed for activation but remain in a resting state. Our model provides key tools for further identification and characterization of pathways that control quiescence and self-renewal in HSCs.
明确调节干细胞维持、增殖和分化的机制,对于确定在应激状态下改善干细胞功能的治疗方法至关重要。在此,我们已确定肿瘤抑制因子生长抑制因子4(Ing4)是造血干细胞(HSC)稳态的关键调节因子。Ing4缺陷的癌细胞系模型表明,Ing4作为一种肿瘤抑制因子发挥作用,部分原因是Ing4介导了包括c-Myc在内的几种主要信号通路的调节。在造血干细胞中,我们发现Ing4缺陷会促进与激活相关的基因表达特征,但造血干细胞停滞在G期,表达多种静止标记物。在功能上,Ing4缺陷的造血干细胞在移植后表现出强大的再生能力。我们的研究结果表明,Ing4缺陷会促进造血干细胞进入一种准备状态,在这种状态下,它们在转录水平上似乎已做好激活准备,但仍处于静止状态。我们的模型为进一步鉴定和表征控制造血干细胞静止和自我更新的通路提供了关键工具。