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Synergy of NUP98-HOXA10 Fusion Gene and NrasG12D Mutation Preserves the Stemness of Hematopoietic Stem Cells on Culture Condition

机译:NUP98-HOXA10融合基因与NrasG12D突变的协同作用在培养条件下保留造血干细胞的干性。

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摘要

Natural hematopoietic stem cells (HSC) are susceptible and tend to lose stemness, differentiate, or die on culture condition in vitro, which adds technical challenge for maintaining bona fide HSC-like cells, if ever generated, in protocol screening from pluripotent stem cells. It remains largely unknown whether gene-editing of endogenous genes can genetically empower HSC to endure the culture stress and preserve stemness. In this study, we revealed that both NUP98-HOXA10HD fusion and endogenous Nras mutation modifications (NrasG12D) promoted the engraftment competitiveness of HSC. Furthermore, the synergy of these two genetic modifications endowed HSC with super competitiveness in vivo. Strikingly, single NAV-HSC successfully maintained its stemness and showed robust multi-lineage engraftments after undergoing the in vitro culture. Mechanistically, NUP98-HOXA10HD fusion and NrasG12D mutation distinctly altered multiple pathways involving the cell cycle, cell division, and DNA replication, and distinctly regulated stemness-related genes including Hoxa9, Prdm16, Hoxb4, Trim27, and Smarcc1 in the context of HSC. Thus, we develop a super-sensitive transgenic model reporting the existence of HSC at the single cell level on culture condition, which could be beneficial for protocol screening of bona fide HSC regeneration from pluripotent stem cells in vitro.
机译:天然造血干细胞(HSC)在体外培养条件下易感且趋于失去干性,分化或死亡,这在从多能干细胞的方案筛选中,要维持真正的HSC样细胞(如果曾经产生过),则增加了技术挑战。内源基因的基因编辑能否在基因上赋予HSC耐受培养压力并保持茎干的能力,在很大程度上仍然未知。在这项研究中,我们揭示了NUP98-HOXA10HD融合和内源性Nras突变修饰(NrasG12D)均可促进HSC的移入竞争力。此外,这两种基因修饰的协同作用使HSC在体内具有超强的竞争力。引人注目的是,单个NAV-HSC在进行体外培养后成功地保持了其干性并显示出强大的多谱系移入。从机制上讲,NUP98-HOXA10HD融合和NrasG12D突变明显改变了涉及细胞周期,细胞分裂和DNA复制的多种途径,并且在HSC背景下明显调节了干性相关基因,包括Hoxa9,Prdm16,Hoxb4,Trim27和Smarcc1。因此,我们建立了一个超灵敏的转基因模型,报告了培养条件下单细胞水平上HSC的存在,这可能有益于从多能干细胞体外进行真正HSC再生的方案筛选。

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