Haematopoietic Stem Cell Biology Laboratory, MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine, University of Oxford, OX3 9DS, Oxford, UK.
MRC Molecular Haematology Unit, MRC Weatherall Institute of Molecular Medicine, Radcliffe Department of Medicine, University of Oxford, OX3 9DS, Oxford, UK.
Nat Commun. 2023 Sep 28;14(1):6062. doi: 10.1038/s41467-023-41691-y.
Hematopoietic stem cells (HSCs) residing in specialized niches in the bone marrow are responsible for the balanced output of multiple short-lived blood cell lineages in steady-state and in response to different challenges. However, feedback mechanisms by which HSCs, through their niches, sense acute losses of specific blood cell lineages remain to be established. While all HSCs replenish platelets, previous studies have shown that a large fraction of HSCs are molecularly primed for the megakaryocyte-platelet lineage and are rapidly recruited into proliferation upon platelet depletion. Platelets normally turnover in an activation-dependent manner, herein mimicked by antibodies inducing platelet activation and depletion. Antibody-mediated platelet activation upregulates expression of Interleukin-1 (IL-1) in platelets, and in bone marrow extracellular fluid in vivo. Genetic experiments demonstrate that rather than IL-1 directly activating HSCs, activation of bone marrow Lepr perivascular niche cells expressing IL-1 receptor is critical for the optimal activation of quiescent HSCs upon platelet activation and depletion. These findings identify a feedback mechanism by which activation-induced depletion of a mature blood cell lineage leads to a niche-dependent activation of HSCs to reinstate its homeostasis.
造血干细胞(HSCs)位于骨髓的特定龛位中,负责在稳态和应对不同挑战时平衡输出多种寿命短的血细胞谱系。然而,HSCs 通过其龛位感知特定血细胞谱系急性损失的反馈机制仍有待建立。虽然所有 HSCs 都能补充血小板,但之前的研究表明,很大一部分 HSCs 在分子上为巨核细胞-血小板谱系做好了准备,并在血小板耗竭时迅速被招募进入增殖。血小板通常以激活依赖性方式进行周转,在此通过诱导血小板激活和耗竭的抗体来模拟。抗体介导的血小板激活会在上调血小板和体内骨髓细胞外液中白细胞介素-1(IL-1)的表达。遗传实验表明,不是 IL-1 直接激活 HSCs,而是表达 IL-1 受体的骨髓 Lepr 血管周龛细胞的激活对于血小板激活和耗竭后静止 HSCs 的最佳激活至关重要。这些发现确定了一种反馈机制,即成熟血细胞谱系的激活诱导耗竭会导致龛位依赖性 HSCs 激活,以恢复其体内平衡。