Haematopoietic Stem Cell Biology Laboratory, Medical Research Council Molecular Haematology Unit, Medical Research Council Weatherall Institute of Molecular Medicine, University of Oxford, Oxford, United Kingdom.
Department of Immunology and Inflammation, Centre for Inflammatory Disease, Imperial College London, London, United Kingdom.
Blood. 2023 Nov 9;142(19):1622-1632. doi: 10.1182/blood.2022019018.
A critical regulatory role of hematopoietic stem cell (HSC) vascular niches in the bone marrow has been implicated to occur through endothelial niche cell expression of KIT ligand. However, endothelial-derived KIT ligand is expressed in both a soluble and membrane-bound form and not unique to bone marrow niches, and it is also systemically distributed through the circulatory system. Here, we confirm that upon deletion of both the soluble and membrane-bound forms of endothelial-derived KIT ligand, HSCs are reduced in mouse bone marrow. However, the deletion of endothelial-derived KIT ligand was also accompanied by reduced soluble KIT ligand levels in the blood, precluding any conclusion as to whether the reduction in HSC numbers reflects reduced endothelial expression of KIT ligand within HSC niches, elsewhere in the bone marrow, and/or systemic soluble KIT ligand produced by endothelial cells outside of the bone marrow. Notably, endothelial deletion, specifically of the membrane-bound form of KIT ligand, also reduced systemic levels of soluble KIT ligand, although with no effect on stem cell numbers, implicating an HSC regulatory role primarily of soluble rather than membrane KIT ligand expression in endothelial cells. In support of a role of systemic rather than local niche expression of soluble KIT ligand, HSCs were unaffected in KIT ligand deleted bones implanted into mice with normal systemic levels of soluble KIT ligand. Our findings highlight the need for more specific tools to unravel niche-specific roles of regulatory cues expressed in hematopoietic niche cells in the bone marrow.
造血干细胞(HSC)血管龛在骨髓中的关键调节作用被认为是通过内皮龛细胞表达 KIT 配体来实现的。然而,内皮细胞衍生的 KIT 配体以可溶性和膜结合形式表达,并且不仅存在于骨髓龛中,而且通过循环系统在全身分布。在这里,我们证实,当内皮衍生的 KIT 配体的可溶性和膜结合形式都被删除时,小鼠骨髓中的 HSCs 减少。然而,内皮衍生的 KIT 配体的缺失也伴随着血液中可溶性 KIT 配体水平的降低,这使得我们无法得出结论,即 HSC 数量的减少是否反映了 HSC 龛内、骨髓其他部位以及/或骨髓外内皮细胞产生的系统性可溶性 KIT 配体中内皮表达的 KIT 配体减少。值得注意的是,内皮细胞的缺失,特别是膜结合形式的 KIT 配体的缺失,也降低了系统性可溶性 KIT 配体的水平,尽管对干细胞数量没有影响,这表明可溶性而不是膜结合 KIT 配体在内皮细胞中的表达对 HSCs 具有主要的调节作用。为支持可溶性 KIT 配体在系统性而非局部龛中的表达发挥作用,在具有正常系统性可溶性 KIT 配体水平的小鼠中植入缺失 KIT 配体的骨骼,HSCs 不受影响。我们的发现强调了需要更特异性的工具来揭示骨髓中造血龛细胞中表达的调节线索的龛特异性作用。