Sudo T, Nishikawa S, Ogawa M, Kataoka H, Ohno N, Izawa A, Hayashi S, Nishikawa S
Basic Research Laboratories, Toray Industries, Inc., Kamakura, Japan.
Oncogene. 1995 Dec 21;11(12):2469-76.
Whereas the molecular natures of M-CSF/CSF-1 and its receptor c-fms are well characterized, its actual role in the intramarrow hematopoiesis remains obscure. This is because disruption of this signaling pathway results in the osteopetrosis mouse that lacks the bone cavity for hematopoiesis. To elucidate the role of c-fms in intramarrow hematopoiesis, we produced an antagonistic monoclonal antibody to murine c-fms and investigated its expression and function in the normal bone marrow. c-fms+ cells were detected both in mature and immature hematopoietic cells. Morphologically, c-kit+c-fms-, c-kit+c-fms+ and c-kit-c-fms+ cells were medium sized blasts, large promyelocytes with azurophilic granules and mature monocytes respectively. CFU-M was 10-fold more enriched in the c-kit+c-fms- than c-kit+c-fms+ fraction. Moreover, injection of the anti c-fms antibody had no effect on the production of CFU-M in the bone marrow, while anti-c-kit mAb could deplete them. As c-kit+c-fms+ cells were readily generated in the culture of c-kit+c-fms- cells, most of the CFU-M in the bone marrow are, in fact, c-fms- cells that differentiate into c-fms+ upon culture. These observations indicate a clear functional hierarchy of c-kit and c-fms in the bone marrow. Namely, c-kit plays the primary role in the production and maintenance of CFU-M, while c-fms, though it co-expressed with c-kit and functions as the growth receptor for M-CSF in the culture, has only a minimum role in the proliferation of c-fms+ cells in the bone marrow.
虽然巨噬细胞集落刺激因子(M-CSF)/集落刺激因子-1(CSF-1)及其受体c-fms的分子性质已得到充分表征,但其在骨髓内造血中的实际作用仍不清楚。这是因为该信号通路的破坏会导致出现缺乏造血骨髓腔的骨硬化小鼠。为了阐明c-fms在骨髓内造血中的作用,我们制备了一种针对小鼠c-fms的拮抗单克隆抗体,并研究了其在正常骨髓中的表达和功能。在成熟和未成熟造血细胞中均检测到c-fms+细胞。形态学上,c-kit+c-fms-、c-kit+c-fms+和c-kit-c-fms+细胞分别为中等大小的母细胞、带有嗜天青颗粒的大早幼粒细胞和成熟单核细胞。集落形成单位-巨噬细胞(CFU-M)在c-kit+c-fms-组分中的富集程度比在c-kit+c-fms+组分中高10倍。此外,注射抗c-fms抗体对骨髓中CFU-M的产生没有影响,而抗c-kit单克隆抗体可使其减少。由于c-kit+c-fms+细胞很容易在c-kit+c-fms-细胞的培养物中产生,事实上骨髓中的大多数CFU-M是c-fms-细胞,它们在培养时会分化为c-fms+细胞。这些观察结果表明c-kit和c-fms在骨髓中存在明确的功能层次结构。也就是说,c-kit在CFU-M的产生和维持中起主要作用,而c-fms虽然与c-kit共表达并在培养中作为M-CSF的生长受体发挥作用,但在骨髓中c-fms+细胞的增殖中仅起最小作用。