Wellcome MRC Cambridge Stem Cell Institute, University of Cambridge, Hills Road, Cambridge CB2 0XY, UK; Department of Haematology, University of Cambridge, Cambridge CB2 0XY, UK.
York Biomedical Research Institute, Department of Biology, University of York, York YO10 5DD, UK.
Stem Cell Reports. 2021 Jun 8;16(6):1614-1628. doi: 10.1016/j.stemcr.2021.04.002. Epub 2021 May 6.
Advances in the isolation and gene expression profiling of single hematopoietic stem cells (HSCs) have permitted in-depth resolution of their molecular program. However, long-term HSCs can only be isolated to near purity from adult mouse bone marrow, thereby precluding studies of their molecular program in different physiological states. Here, we describe a powerful 7-day HSC hibernation culture system that maintains HSCs as single cells in the absence of a physical niche. Single hibernating HSCs retain full functional potential compared with freshly isolated HSCs with respect to colony-forming capacity and transplantation into primary and secondary recipients. Comparison of hibernating HSC molecular profiles to their freshly isolated counterparts showed a striking degree of molecular similarity, further resolving the core molecular machinery of HSC self-renewal while also identifying key factors that are potentially dispensable for HSC function, including members of the AP1 complex (Jun, Fos, and Ncor2), Sult1a1 and Cish. Finally, we provide evidence that hibernating mouse HSCs can be transduced without compromising their self-renewal activity and demonstrate the applicability of hibernation cultures to human HSCs.
单细胞造血干细胞(HSCs)的分离和基因表达谱分析的进展使得对其分子程序进行深入解析成为可能。然而,长期 HSCs 只能从成年小鼠骨髓中近乎纯化为单个细胞,从而排除了在不同生理状态下研究其分子程序的可能性。在这里,我们描述了一种强大的 7 天 HSC 冬眠培养系统,该系统可在没有物理生态位的情况下将 HSCs 作为单个细胞维持。与新分离的 HSCs 相比,休眠的 HSCs 具有完全的功能潜力,表现在集落形成能力和向原发性和继发性受者的移植能力方面。与新分离的 HSCs 相比,休眠 HSC 的分子谱显示出惊人的相似程度,进一步解析了 HSC 自我更新的核心分子机制,同时还确定了一些对 HSC 功能可能不是必需的关键因素,包括 AP1 复合物(Jun、Fos 和 Ncor2)、Sult1a1 和 Cish 的成员。最后,我们提供了证据表明,冬眠的小鼠 HSCs 可以在不损害其自我更新活性的情况下被转导,并证明了冬眠培养对人类 HSCs 的适用性。