Nishijima I, Nakahata T, Hirabayashi Y, Inoue T, Kurata H, Miyajima A, Hayashi N, Iwakura Y, Arai K, Yokota T
Department of Molecular and Developmental Biology, University of Tokyo, Japan.
Mol Biol Cell. 1995 May;6(5):497-508. doi: 10.1091/mbc.6.5.497.
Granulocyte-macrophage colony-stimulating factor (GM-CSF) mainly stimulates proliferation and maturation of myeloid progenitor cells. Although the signal transduction pathways triggered by GM-CSF receptor (GMR) have been extensively characterized, the roles of GMR signals in differentiation have remained to be elucidated. To examine the relationship between receptor expression and differentiation of hemopoietic cells, we used transgenic mice (Tg-mice) that constitutively express human (h) GMR at almost all stages of hemopoietic cell development. Proliferation and differentiation of hemopoietic progenitors in bone marrow cells from these Tg-mice were analyzed by methylcellulose colony formation assay. High affinity GMR interacts with GM-CSF in a species-specific manner, therefore one can analyze the effects of hGMR signals on differentiation of mouse hemopoietic progenitors using hGM-CSF. Although mouse (m) GM-CSF yielded only GM colonies, hGM-CSF supported various types of colonies including GM, eosinophil, mast cell, erythrocyte, megakaryocyte, blast cell, and mixed hemopoietic colonies. Thus, the effects of hGM-CSF on colony formation more closely resembled mIL-3 than those of mGM-CSF. In addition, hGM-CSF generated a much larger number of blast cell colonies and mixed cell colonies than did mIL-3. hGM-CSF also generated erythrocyte colonies in the absence of erythropoietin. Therefore, GM-CSF apparently has the capacity to promote growth of cells of almost all hemopoietic cell lineages, if functional hGMR is present.
粒细胞-巨噬细胞集落刺激因子(GM-CSF)主要刺激髓系祖细胞的增殖和成熟。尽管GM-CSF受体(GMR)触发的信号转导途径已得到广泛表征,但GMR信号在分化中的作用仍有待阐明。为了研究造血细胞受体表达与分化之间的关系,我们使用了在造血细胞发育的几乎所有阶段都组成性表达人(h)GMR的转基因小鼠(Tg小鼠)。通过甲基纤维素集落形成试验分析了这些Tg小鼠骨髓细胞中造血祖细胞的增殖和分化。高亲和力GMR以物种特异性方式与GM-CSF相互作用,因此可以使用hGM-CSF分析hGMR信号对小鼠造血祖细胞分化的影响。尽管小鼠(m)GM-CSF仅产生GM集落,但hGM-CSF支持多种类型的集落,包括GM、嗜酸性粒细胞、肥大细胞、红细胞、巨核细胞、原始细胞和混合造血集落。因此,hGM-CSF对集落形成的影响比mGM-CSF更类似于mIL-3。此外,hGM-CSF产生的原始细胞集落和混合细胞集落比mIL-3多得多。hGM-CSF在没有促红细胞生成素的情况下也能产生红细胞集落。因此,如果存在功能性hGMR,GM-CSF显然有能力促进几乎所有造血细胞谱系细胞的生长。