Takagi M, Hara T, Ichihara M, Takatsu K, Miyajima A
Department of Molecular Biology, DNAX Research Institute of Molecular and Cellular Biology, Palo Alto, California 94304.
J Exp Med. 1995 Mar 1;181(3):889-99. doi: 10.1084/jem.181.3.889.
The interleukin 3 (IL-3), IL-5, and granulocyte/macrophage colony-stimulating factor receptors consist of a cytokine-specific alpha subunit and the common beta subunit. Whereas IL-3 stimulates various lineages of hematopoietic cells, including multipotential progenitors, IL-5 acts mainly as an eosinophil lineage-specific factor. To investigate whether the lineage specificity of IL-5 is due to restricted expression of the IL-5 receptor alpha subunit (IL-5R alpha), we generated transgenic mice that express the mouse IL-5R alpha constitutively by phosphoglycerate kinase promoter. The transgenic mouse expressed IL-5R alpha ubiquitously, and the bone marrow cells formed various types of colonies, including multi-lineage colonies, in response to IL-5. IL-5 also supported formation of both multi-lineage and blast cell colonies from dormant progenitors of the 5-fluorouracil-treated transgenic mice. The cells composing the blast cell colony gave rise to many colonies including multi-lineage colonies when they were replated in secondary culture containing either Il-5 or IL-3. There was no significant difference in replating efficiency or in types of secondary colonies between IL-5- and IL-3-stimulated cultures. Conversely, the cells from the IL-3-induced blast cell colonies of the transgenic mice proliferated in response to either IL-3 or IL-5. Thus, the development of the progenitors can be equally supported by either IL-5 or IL-3, suggesting that intracellular signals from the IL-3R can be replaced by those from IL-5. These results strongly suggest that the lineage specificity of IL-5 is mainly due to the restricted expression of IL-5R alpha.
白细胞介素3(IL-3)、IL-5以及粒细胞/巨噬细胞集落刺激因子受体由细胞因子特异性α亚基和共同的β亚基组成。IL-3可刺激包括多能祖细胞在内的各种造血细胞谱系,而IL-5主要作为嗜酸性粒细胞谱系特异性因子发挥作用。为了研究IL-5的谱系特异性是否归因于IL-5受体α亚基(IL-5Rα)的表达受限,我们构建了通过磷酸甘油酸激酶启动子组成性表达小鼠IL-5Rα的转基因小鼠。该转基因小鼠全身表达IL-5Rα,其骨髓细胞在IL-5刺激下可形成包括多谱系集落在内的各种类型集落。IL-5还支持5-氟尿嘧啶处理的转基因小鼠的休眠祖细胞形成多谱系集落和原始细胞集落。当组成原始细胞集落的细胞在含有IL-5或IL-3的二级培养中再次接种时,它们可产生包括多谱系集落在内的许多集落。IL-5刺激培养与IL-3刺激培养在再次接种效率或二级集落类型上无显著差异。相反,转基因小鼠IL-3诱导的原始细胞集落中的细胞对IL-3或IL-5均可产生增殖反应。因此,IL-5或IL-3均可同等支持祖细胞的发育,这表明来自IL-3受体的细胞内信号可被来自IL-5的信号替代。这些结果强烈表明,IL-5的谱系特异性主要归因于IL-5Rα的表达受限。