Sugiura K, Hisha H, Ishikawa J, Adachi Y, Taketani S, Lee S, Nagahama T, Ikehara S
First Department of Pathology, Transplantation Center, Moriguchi-City, Japan.
Stem Cells. 2001;19(1):46-58. doi: 10.1634/stemcells.19-1-46.
We have previously found that a significant number of hematopoietic progenitors accumulate in engrafted bones with the same major histocompatibility complex (MHC) as the transplanted bone marrow cells. In the present study, to further clarify the MHC restriction between hematopoietic stem cells (HSC) and microenvironment, we carried out cobblestone colony formation assays by culturing HSCs with MHC-matched or -mismatched stromal cell monolayers. The formation of cobblestone colonies under MHC-mismatched stromal cells significantly decreased in comparison with MHC-matched stromal cells. However, the decrease in cobblestone colony formation under MHC-mismatched stromal cells was not significant when using MHC class I-deficient HSC or stromal cells. Taken together with the results using B10 congenic strains, it is suggested that the MHC preference is restricted by MHC class Ia molecules. Treatment with monoclonal antibodies (mAbs) against MHC class Ia molecules of stromal cell phenotypes significantly enhanced the cobblestone colony formation, whereas treatment with mAbs against HSC phenotypes significantly inhibited it. The expression of cytokines to promote hematopoiesis was enhanced by the mAbs against stromal cell phenotypes. The enhancement of cytokine expression was also observed when stromal cells and HSCs were MHC-matched. These results suggest that signaling via the MHC molecules augments stromal cell activity and elicits the MHC restriction.
我们之前发现,大量造血祖细胞会在与移植骨髓细胞具有相同主要组织相容性复合体(MHC)的植入骨中积累。在本研究中,为了进一步阐明造血干细胞(HSC)与微环境之间的MHC限制,我们通过将HSC与MHC匹配或不匹配的基质细胞单层共培养来进行鹅卵石集落形成试验。与MHC匹配的基质细胞相比,MHC不匹配的基质细胞下鹅卵石集落的形成显著减少。然而,当使用I类MHC缺陷的HSC或基质细胞时,MHC不匹配的基质细胞下鹅卵石集落形成的减少并不显著。结合使用B10同源系的结果,提示MHC偏好受I类MHC分子限制。用针对基质细胞表型的I类MHC分子的单克隆抗体(mAb)处理显著增强了鹅卵石集落的形成,而用针对HSC表型的mAb处理则显著抑制了它。针对基质细胞表型的mAb增强了促进造血的细胞因子的表达。当基质细胞和HSC为MHC匹配时,也观察到细胞因子表达的增强。这些结果表明,通过MHC分子的信号传导增强了基质细胞活性并引发了MHC限制。