Watowich S S, Liu K D, Xie X, Lai S Y, Mikami A, Longmore G D, Goldsmith M A
Department of Immunology, M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
J Biol Chem. 1999 Feb 26;274(9):5415-21. doi: 10.1074/jbc.274.9.5415.
Signal transduction by the erythropoietin receptor (EPOR) is activated by ligand-mediated receptor homodimerization. However, the relationship between extracellular and intracellular domain oligomerization remains poorly understood. To assess the requirements for dimerization of receptor cytoplasmic sequences for signaling, we overexpressed mutant EPORs in combination with wild-type (WT) EPOR to drive formation of heterodimeric (i.e. WT-mutant) receptor complexes. Dimerization of the membrane-proximal portion of the EPOR cytoplasmic region was found to be critical for the initiation of mitogenic signaling. However, dimerization of the entire EPOR cytoplasmic region was not required. To examine this process more closely, we generated chimeras between the intracellular and transmembrane portions of the EPOR and the extracellular domains of the interleukin-2 receptor beta and gammac chains. These chimeras allowed us to assess more precisely the signaling role of each receptor chain because only heterodimers of WT and mutant receptor chimeras form in the presence of interleukin-2. Coexpression studies demonstrated that a functional receptor complex requires the membrane-proximal region of each receptor subunit in the oligomer to permit activation of JAK2 but only one membrane-distal tail to activate STAT5 and to support cell proliferation. Thus, this study defines key relationships involved in the assembly and activation of the EPOR signal transduction complex which may be applicable to other homodimeric cytokine receptors.
促红细胞生成素受体(EPOR)的信号转导通过配体介导的受体同源二聚化而被激活。然而,细胞外和细胞内结构域寡聚化之间的关系仍知之甚少。为了评估受体细胞质序列二聚化对信号传导的要求,我们将突变型EPOR与野生型(WT)EPOR共同过表达,以驱动异源二聚体(即WT-突变体)受体复合物的形成。发现EPOR细胞质区域膜近端部分的二聚化对于有丝分裂信号传导的启动至关重要。然而,并不需要整个EPOR细胞质区域的二聚化。为了更仔细地研究这个过程,我们构建了EPOR的细胞内和跨膜部分与白细胞介素-2受体β和γ链的细胞外结构域之间的嵌合体。这些嵌合体使我们能够更精确地评估每条受体链的信号传导作用,因为在白细胞介素-2存在的情况下,只有WT和突变体受体嵌合体的异源二聚体形成。共表达研究表明,功能性受体复合物需要寡聚体中每个受体亚基的膜近端区域来激活JAK2,但只需要一个膜远端尾巴来激活STAT5并支持细胞增殖。因此,本研究定义了EPOR信号转导复合物组装和激活中涉及的关键关系,这些关系可能适用于其他同源二聚体细胞因子受体。