Hara T, Miyajima A
Institute of Molecular and Cellular Biosciences, University of Tokyo, Japan.
Stem Cells. 1996 Nov;14(6):605-18. doi: 10.1002/stem.140605.
Interleukin 3 (IL-3) promotes development of hematopoietic cells through activation of the IL-3 receptor (IL-3R) complex consisting of alpha and beta subunits. The alpha subunit binds IL-3 with low affinity and forms a high-affinity receptor with the common beta subunit (beta c). The beta c subunit does not bind any cytokine by itself but is involved in the formation of high-affinity functional receptors for IL-5 and GM-CSF. As the alpha subunits provide the specificity to cytokines and beta c plays a major role in signal transduction, IL-3, GM-CSF and IL-5 exhibit similar functions when they act on the same cells. Surprisingly, no apparent hematological defect other than a reduced number of eosinophils was found in knock-out mice lacking an entire function of IL-3, GM-CSF and IL-5; this indicates a remarkable functional overlap with other cytokine systems for hematopoiesis. Binding of the cytokines to the receptor induces activation of the JAK2 tyrosine kinase that associates with beta c and triggers the signaling events. The membrane proximal region of beta c is responsible for activation of JAK2 and STAT5, as well as for induction of c-myc. The signals induced by this region are required for cell-cycle progression and DNA synthesis. Activation of the Ras pathway requires the distal region of beta c and is involved in the suppression of apoptosis. Proliferation of hematopoietic cells requires signals for both DNA synthesis and anti-apoptosis. In this review, we describe the recent findings of the function and signal transduction mediated by the IL-3R system.
白细胞介素3(IL-3)通过激活由α和β亚基组成的IL-3受体(IL-3R)复合物来促进造血细胞的发育。α亚基以低亲和力结合IL-3,并与共同的β亚基(βc)形成高亲和力受体。βc亚基自身不结合任何细胞因子,但参与IL-5和粒细胞-巨噬细胞集落刺激因子(GM-CSF)高亲和力功能受体的形成。由于α亚基赋予细胞因子特异性,而βc在信号转导中起主要作用,所以IL-3、GM-CSF和IL-5作用于相同细胞时表现出相似的功能。令人惊讶的是,在缺乏IL-3、GM-CSF和IL-5全部功能的基因敲除小鼠中,除了嗜酸性粒细胞数量减少外,未发现明显的血液学缺陷;这表明在造血过程中与其他细胞因子系统存在显著的功能重叠。细胞因子与受体的结合诱导与βc相关的JAK2酪氨酸激酶激活,并触发信号转导事件。βc的膜近端区域负责JAK2和信号转导及转录激活因子5(STAT5)的激活,以及c-myc的诱导。该区域诱导的信号是细胞周期进程和DNA合成所必需的。Ras途径的激活需要βc的远端区域,并参与细胞凋亡的抑制。造血细胞的增殖需要DNA合成和抗凋亡的信号。在本综述中,我们描述了IL-3R系统介导的功能和信号转导的最新研究结果。