干细胞
造血
生物
细胞生物学
祖细胞
移植
骨髓
表型
免疫学
遗传学
基因
医学
外科
作者
James Y. Chen,Masanori Miyanishi,Sean K. Wang,Satoshi Yamazaki,Rahul Sinha,Kevin S. Kao,Jun Seita,Debashis Sahoo,Hiromitsu Nakauchi,Irving L. Weissman
出处
期刊:Nature
[Springer Nature]
日期:2016-02-01
卷期号:530 (7589): 223-227
被引量:316
摘要
Haematopoietic stem cells (HSCs) are arguably the most extensively characterized tissue stem cells. Since the identification of HSCs by prospective isolation, complex multi-parameter flow cytometric isolation of phenotypic subsets has facilitated studies on many aspects of HSC biology, including self-renewal, differentiation, ageing, niche, and diversity. Here we demonstrate by unbiased multi-step screening, identification of a single gene, homeobox B5 (Hoxb5, also known as Hox-2.1), with expression in the bone marrow that is limited to long-term (LT)-HSCs in mice. Using a mouse single-colour tri-mCherry reporter driven by endogenous Hoxb5 regulation, we show that only the Hoxb5(+) HSCs exhibit long-term reconstitution capacity after transplantation in primary transplant recipients and, notably, in secondary recipients. Only 7-35% of various previously defined immunophenotypic HSCs are LT-HSCs. Finally, by in situ imaging of mouse bone marrow, we show that >94% of LT-HSCs (Hoxb5(+)) are directly attached to VE-cadherin(+) cells, implicating the perivascular space as a near-homogenous location of LT-HSCs.
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