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促红细胞生成素受体与弗瑞德脾集落形成病毒gp55糖蛋白的融合可转化一个因子依赖性造血细胞系。

Fusion of the erythropoietin receptor and the Friend spleen focus-forming virus gp55 glycoprotein transforms a factor-dependent hematopoietic cell line.

作者信息

Showers M O, DeMartino J C, Saito Y, D'Andrea A D

机构信息

Division of Pediatric Oncology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Mol Cell Biol. 1993 Feb;13(2):739-48. doi: 10.1128/mcb.13.2.739-748.1993.

Abstract

The Friend spleen focus-forming virus (SFFV) gp55 glycoprotein binds to the erythropoietin receptor (EPO-R), causing constitutive receptor signaling and the first stage of Friend erythroleukemia. We have used three independent strategies to further define this transforming molecular interaction. First, using a retroviral selection strategy, we have isolated the cDNAs encoding three fusion polypeptides containing regions of both EPO-R and gp55. These fusion proteins, like full-length gp55, transformed the Ba/F3 factor-dependent hematopoietic cell line and localized the transforming activity of gp55 to its transmembrane domain. Second, we have isolated a mutant of gp55 (F-gp55-M1) which binds, but fails to activate, EPO-R. We have compared the transforming activity of this gp55 mutant with the EPO-R-gp55 fusion proteins and with other variants of gp55, including wild-type polycythemia Friend gp55 and Rauscher gp55. All of the fusion polypeptides and mutant gp55 polypeptides were expressed at comparable levels, and all coimmunoprecipitated with wild-type EPO-R, but only the Friend gp55 and the EPO-R-gp55 fusion proteins constitutively activated wild-type EPO-R. Third, we have examined the specificity of the EPO-R-gp55 interaction by comparing the differential activation of murine and human EPO-R by gp55. Wild-type gp55 had a highly specific interaction with murine EPO-R; gp55 bound, but did not activate, human EPO-R.

摘要

弗瑞德脾集落形成病毒(SFFV)的gp55糖蛋白与促红细胞生成素受体(EPO-R)结合,导致受体持续信号传导,这是弗瑞德红白血病的第一阶段。我们采用了三种独立的策略来进一步明确这种转化分子相互作用。首先,利用逆转录病毒筛选策略,我们分离出了编码三种融合多肽的cDNA,这些融合多肽包含EPO-R和gp55的区域。这些融合蛋白与全长gp55一样,能转化Ba/F3因子依赖性造血细胞系,并将gp55的转化活性定位到其跨膜结构域。其次,我们分离出了一种gp55突变体(F-gp55-M1),它能结合但不能激活EPO-R。我们将这种gp55突变体的转化活性与EPO-R-gp55融合蛋白以及gp55的其他变体进行了比较,包括野生型真性红细胞增多症弗瑞德gp55和劳舍尔gp55。所有融合多肽和突变gp55多肽的表达水平相当,并且都能与野生型EPO-R进行共免疫沉淀,但只有弗瑞德gp55和EPO-R-gp55融合蛋白能持续激活野生型EPO-R。第三,我们通过比较gp55对小鼠和人类EPO-R的差异激活来研究EPO-R-gp55相互作用的特异性。野生型gp55与小鼠EPO-R有高度特异性相互作用;gp55能结合但不能激活人类EPO-R。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e29d/358956/cae9aec7bc58/molcellb00014-0025-a.jpg

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