Lee H M, Wu W, Wysoczynski M, Liu R, Zuba-Surma E K, Kucia M, Ratajczak J, Ratajczak M Z
Stem Cell Biology Program at the James Graham Brown Cancer Center, University of Louisville, Louisville, KY, USA.
Leukemia. 2009 Nov;23(11):2052-62. doi: 10.1038/leu.2009.158. Epub 2009 Aug 6.
We reported that complement cascade (CC) becomes activated in bone marrow (BM) during granulocyte colony-stimulating factor (G-CSF) mobilization of hematopoietic stem/progenitor cells (HSPCs) and showed that, although third CC component (C3)-deficient mice are easy mobilizers, fifth CC component (C5)-deficient mice mobilize very poorly. To explain this, we postulated that activation/cleavage of CC releases C3a and C5a anaphylatoxins that differently regulate mobilization. Accordingly, C3a, by enhancing responsiveness of HSPCs to decreasing concentrations of stromal-derived growth factor-1 (SDF-1) in BM, prevents mobilization and promotes their BM retention. Therefore, in this study, we focused on the mobilization-enhancing role of C5a. We found that C5a receptor (C5aR) is not expressed on the surface of HSPCs, and that C5a-mediated promobilization effects are mediated by stimulation of granulocytes. Overall, our data support the following model. First C5aR(+) granulocytes are chemoattracted by plasma C5 cleavage fragments, being the first wave of cells leaving BM. This facilitates a subsequent egress of HSPCs. In the next step, after leaving BM, granulocytes undergo degranulation in response to plasma C5a and secrete some cationic peptides (cathelicidin, beta-defensin) that, as shown here for the first time, highly enhance the responsiveness of HSPCs to plasma SDF-1 gradient. In conclusion, our data reveal the underappreciated central role of innate immunity in mobilization, in which C5 cleavage fragments through granulocytes orchestrate this process.
我们报道过,在造血干细胞/祖细胞(HSPCs)的粒细胞集落刺激因子(G-CSF)动员过程中,补体级联反应(CC)在骨髓(BM)中被激活,并且表明,虽然缺乏第三补体成分(C3)的小鼠是容易动员的,但缺乏第五补体成分(C5)的小鼠动员效果非常差。为了解释这一点,我们推测CC的激活/裂解会释放出C3a和C5a过敏毒素,它们对动员的调节方式不同。相应地,C3a通过增强HSPCs对BM中基质衍生生长因子-1(SDF-1)浓度降低的反应性,阻止动员并促进它们在BM中的保留。因此,在本研究中,我们聚焦于C5a的动员增强作用。我们发现C5a受体(C5aR)在HSPCs表面不表达,并且C5a介导的促动员作用是由粒细胞的刺激介导的。总体而言,我们的数据支持以下模型。首先,C5aR(+)粒细胞被血浆C5裂解片段趋化吸引,成为离开BM的第一波细胞。这促进了随后HSPCs的流出。在下一步中,粒细胞离开BM后,会响应血浆C5a进行脱颗粒,并分泌一些阳离子肽(cathelicidin、β-防御素),正如我们首次在此处所示,这些阳离子肽会高度增强HSPCs对血浆SDF-1梯度的反应性。总之,我们的数据揭示了先天免疫在动员中未被充分认识的核心作用,其中C5裂解片段通过粒细胞协调这一过程。