Ross Ewan A, Freeman Sylvie, Zhao Yan, Dhanjal Tarvinder S, Ross Emma J, Lax Sian, Ahmed Zubair, Hou Tie Zheng, Kalia Neena, Egginton Stuart, Nash Gerard, Watson Steve P, Frampton Jon, Buckley Christopher D
Rheumatology Research Group, MRC Centre for Immune Regulation, University of Birmingham, Birminham, United Kingdom.
PLoS One. 2008 Jun 4;3(6):e2338. doi: 10.1371/journal.pone.0002338.
Although the expression of PECAM-1 (CD31) on vascular and haematopoietic cells within the bone marrow microenvironment has been recognized for some time, its physiological role within this niche remains unexplored. In this study we show that PECAM-1 influences steady state hematopoietic stem cell (HSC) progenitor numbers in the peripheral blood but not the bone marrow compartment. PECAM-1(-/-) mice have higher levels of HSC progenitors in the blood compared to their littermate controls. We show that PECAM-1 is required on both progenitors and bone marrow vascular cells in order for efficient transition between the blood and bone marrow to occur. We have identified key roles for PECAM-1 in both the regulation of HSC migration to the chemokine CXCL12, as well as maintaining levels of the matrix degrading enzyme MMP-9 in the bone marrow vascular niche. Using intravital microscopy and adoptive transfer of either wild type (WT) or PECAM-1(-/-) bone marrow precursors, we demonstrate that the increase in HSC progenitors in the blood is due in part to a reduced ability to migrate from blood to the bone marrow vascular niche. These findings suggest a novel role for PECAM-1 as a regulator of resting homeostatic progenitor cell numbers in the blood.
尽管骨髓微环境中血管和造血细胞上PECAM-1(CD31)的表达已被认识一段时间了,但其在该生态位中的生理作用仍未被探索。在本研究中,我们表明PECAM-1影响外周血中稳态造血干细胞(HSC)祖细胞的数量,但不影响骨髓区室中的数量。与同窝对照相比,PECAM-1(-/-)小鼠血液中的HSC祖细胞水平更高。我们表明,为了使血液和骨髓之间有效转变,祖细胞和骨髓血管细胞上都需要PECAM-1。我们已经确定PECAM-1在调节HSC向趋化因子CXCL12迁移以及维持骨髓血管生态位中基质降解酶MMP-9水平方面都发挥关键作用。通过活体显微镜检查以及野生型(WT)或PECAM-1(-/-)骨髓前体的过继转移,我们证明血液中HSC祖细胞的增加部分归因于从血液迁移到骨髓血管生态位的能力降低。这些发现表明PECAM-作为血液中静息稳态祖细胞数量调节剂的新作用。