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促红细胞生成素刺激Shc的酪氨酸磷酸化及其与Grb2和一种145-kD酪氨酸磷酸化蛋白的结合。

Erythropoietin stimulates the tyrosine phosphorylation of Shc and its association with Grb2 and a 145-Kd tyrosine phosphorylated protein.

作者信息

Damen J E, Liu L, Cutler R L, Krystal G

机构信息

Terry Fox Laboratory, B.C. Cancer Agency, Vancouver, Canada.

出版信息

Blood. 1993 Oct 15;82(8):2296-303.

PMID:8400282
Abstract

Although the erythropoietin receptor (EpR) lacks a tyrosine kinase consensus sequence within its proline-rich intracellular domain, addition of its ligand to Ep-responsive cells stimulates the rapid and transient tyrosine phosphorylation of a number of cellular proteins. The characterization of these phosphorylatable substrates, which include 5 major phosphoproteins with molecular masses of approximately 145, 130, 97, 72, and 56 Kd is an essential step in understanding the signal transduction pathways used by Ep. Recently, we and others have shown that the major 72-Kd tyrosine phosphorylated protein is the EpR itself. We now report, using both murine DA-3 and human MO7E cell lines engineered to express high levels of biologically responsive EpRs (and designated DA-ER and MO7-ER, respectively), that the major 56-Kd tyrosine phosphorylated protein is the recently identified SH2-containing protein, p52shc. Interestingly, in Ep-stimulated cells, anti-Shc antibodies coprecipitate the major 145-Kd tyrosine phosphorylated protein in both DA-ER and MO7-ER cells. Tyrosine phosphorylation of both proteins is detectable within 30 seconds of incubation with Ep at 37 degrees C, reaches a maximum between 2 and 5 minutes, and declines by 30 minutes. In addition, tyrosine phosphorylated Shc appears capable of associating with the activated EpR, but this could only be shown in MO7-ER cells. Lastly, as has been shown previously with the tyrosine kinase containing receptors for epidermal growth factor, platelet derived growth factor, and insulin, activation of the EpR leads to the association of p52shc with the 25-Kd polypeptide, Grb2. Taken together, our data suggest that the previously reported increases in rasGTP observed with Ep result, in part, from the tyrosine phosphorylation of Shc and its association with Grb2 and/or a tyrosine phosphorylated 145-Kd protein.

摘要

尽管促红细胞生成素受体(EpR)在其富含脯氨酸的细胞内结构域中缺乏酪氨酸激酶共有序列,但将其配体添加到Ep反应性细胞中会刺激多种细胞蛋白的快速和瞬时酪氨酸磷酸化。对这些可磷酸化底物的表征,包括5种主要磷蛋白,分子量约为145、130、97、72和56 Kd,是理解Ep所使用的信号转导途径的关键步骤。最近,我们和其他人已经表明,主要的72-Kd酪氨酸磷酸化蛋白就是EpR本身。我们现在报告,使用经过工程改造以表达高水平生物反应性EpR的小鼠DA-3和人MO7E细胞系(分别命名为DA-ER和MO7-ER),主要的56-Kd酪氨酸磷酸化蛋白是最近鉴定出的含SH2蛋白p52shc。有趣的是,在Ep刺激的细胞中,抗Shc抗体在DA-ER和MO7-ER细胞中都能共沉淀主要的145-Kd酪氨酸磷酸化蛋白。在37℃与Ep孵育30秒内即可检测到这两种蛋白的酪氨酸磷酸化,在2至5分钟内达到最大值,并在30分钟时下降。此外,酪氨酸磷酸化的Shc似乎能够与活化的EpR结合,但这仅在MO7-ER细胞中得到证实。最后,正如先前在含有表皮生长因子、血小板衍生生长因子和胰岛素的酪氨酸激酶受体中所显示的那样,EpR的激活导致p52shc与25-Kd多肽Grb2结合。综上所述,我们的数据表明,先前报道的Ep诱导的rasGTP增加部分是由于Shc的酪氨酸磷酸化及其与Grb2和/或酪氨酸磷酸化的145-Kd蛋白的结合所致。

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