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促红细胞生成素受体的胞质区包含互不重叠的正性和负性生长调控结构域

The cytoplasmic region of the erythropoietin receptor contains nonoverlapping positive and negative growth-regulatory domains

Mol Cell Biol · 1991 年 4 月 · A D D'Andrea, A Yoshimura, H Youssoufian 等 6 人

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通过截短突变体实验,在促红细胞生成素受体胞内区鉴定出独立的促进生长和抑制生长两个结构域。

促红细胞生成素受体的胞内区没有明显的激酶催化结构域,其信号传递机制尚不清楚。研究人员通过构建一系列截短突变的受体基因,将其导入依赖白细胞介素-3 的小鼠细胞系中,观察细胞对促红细胞生成素的生长反应。结果发现,靠近细胞膜的一个不超过 103 个氨基酸的区域足以传递促红细胞生成素信号,是正性调控结构域;而 C 端一个约 40 个氨基酸的富含丝氨酸区域则起负性调控作用,去除后细胞对促红细胞生成素的敏感性提高十倍。该负性结构域不影响受体的表面表达、亲和力或内吞。这些发现揭示了受体胞内区正负调控结构域的分工,并提示某些病毒蛋白可能通过类似机制激活受体。

为什么推荐给您:基础机制研究,在细胞系中鉴定受体正负调控结构域,属常规增量发现。

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The erythropoietin (EPO) receptor (EPO-R), a member of a large cytokine receptor superfamily, has a 236-amino-acid cytoplasmic region which contains no obvious tyrosine kinase or other catalytic domain. In order to delineate the linear functional domains of the cytoplasmic tail, we generated truncated mutant cDNAs which were transfected into a murine interleukin-3-dependent cell line, Ba/F3, and the EPO-dependent growth characteristics of the stable transfectants were assayed. We identified two unique domains of the cytoplasmic tail. A membrane-proximal positive signal transduction domain of less than or equal to 103 amino acids, in a region highly similar to the interleukin-2 receptor beta chain, was sufficient for EPO-mediated signal transduction. A carboxy-terminal negative-control domain, a serine-rich region of approximately 40 amino acids, increased the EPO requirement for the Ba/F3 transfectants without altering EPO-R cell surface expression, affinity for EPO, receptor oligosaccharide processing, or receptor endocytosis. Truncation of this negative-control domain allowed the Ba/F3 transfectants to grow maximally in only 1 pM EPO, 1/10 the concentration required for growth of cells expressing the wild-type EPO-R. All truncated EPO-R mutants which retained the transmembrane region of the EPO-R polypeptide bound to the gp55 envelope protein of Friend spleen focus-forming virus. Only the functional EPO-R mutants were activated by the gp55, however, suggesting that gp55- and EPO-mediated signaling occur via a similar mechanism.

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