Fujio K, Nosaka T, Kojima T, Kawashima T, Yahata T, Copeland N G, Gilbert D J, Jenkins N A, Yamamoto K, Nishimura T, Kitamura T
Department of Hematopoietic Factors, the Institute of Medical Science, the University of Tokyo, Tokyo, Japan.
Blood. 2000 Apr 1;95(7):2204-10.
In a complementary DNA (cDNA) screening of murine Th2-skewed lymphocytes with our recently developed signal sequence trap method termed SST-REX, a novel type 1 cytokine receptor, Delta1 (delta1), was identified. Although delta1 is ubiquitously expressed in multiple tissues, the expression level is higher in Th2-skewed lymphocytes than in Th1-skewed ones. The delta1 cDNA encodes a 359-amino acid type 1 membrane protein. The extracellular domain of 206 amino acids showed 24% identity with the murine common gamma receptor that is shared among the receptors for interleukin(IL)-2, IL-4, IL-7, IL-9, and IL-15. The membrane-proximal region of delta1 includes a box1 motif, which is important for association with Janus kinases (JAKs), and showed a significant homology with that of the mouse erythropoietin receptor (EPOR). A box2 motif was also found in close proximity to the box1 region. Dimerization of the cytoplasmic region of delta1 alone did not transduce proliferative signals in IL-3-dependent cell lines. However, the membrane-proximal region of delta1 could substitute for that of human EPOR in transmitting proliferative signals and activating JAK2. These results suggest that delta1 is a subunit of cytokine receptor that may be involved in multiple receptor systems and play a regulatory role in the immune system and hematopoiesis.
在用我们最近开发的称为SST-REX的信号序列捕获方法对小鼠Th2偏向淋巴细胞进行互补DNA(cDNA)筛选时,鉴定出一种新型1型细胞因子受体Delta1(δ1)。尽管δ1在多种组织中普遍表达,但在Th2偏向淋巴细胞中的表达水平高于Th1偏向淋巴细胞。δ1 cDNA编码一种359个氨基酸的1型膜蛋白。由206个氨基酸组成的细胞外结构域与白细胞介素(IL)-2、IL-4、IL-7、IL-9和IL-15受体共有的小鼠共同γ受体具有24%的同源性。δ1的膜近端区域包含一个box1基序,这对于与Janus激酶(JAKs)结合很重要,并且与小鼠促红细胞生成素受体(EPOR)的膜近端区域具有显著同源性。在靠近box1区域的位置还发现了一个box2基序。单独的δ1细胞质区域二聚化并不能在IL-3依赖的细胞系中传导增殖信号。然而,δ1的膜近端区域在传递增殖信号和激活JAK2方面可以替代人EPOR的膜近端区域。这些结果表明,δ1是细胞因子受体的一个亚基,可能参与多个受体系统,并在免疫系统和造血过程中发挥调节作用。