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MUC1酪氨酸磷酸化激活细胞外信号调节激酶。

MUC1 tyrosine phosphorylation activates the extracellular signal-regulated kinase.

作者信息

Wang Honghe, Lillehoj Erik P, Kim K Chul

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, MD 21201, USA.

出版信息

Biochem Biophys Res Commun. 2004 Aug 20;321(2):448-54. doi: 10.1016/j.bbrc.2004.06.167.

Abstract

MUC1 is a transmembrane glycoprotein expressed on the apical surface of epithelial cells and exhibiting structural features characteristic of receptors for cytokines and growth factors. Its intracellular cytoplasmic tail (CT) contains multiple amino acid sequence motifs that, once phosphorylated, serve as docking sites for SH2 domain-containing proteins mediating signal transduction. Most studies examining MUC1 signaling have focused on cancer cells where MUC1 is overexpressed, aberrantly glycosylated, and constitutively phosphorylated. No studies have determined the signaling pathways activated in response to stimulation of its ectodomain. To better understand the signaling mechanisms of MUC1, we stably transfected HEK293 cells with an expression plasmid encoding a chimeric protein consisting of the extracellular and transmembrane domains of CD8 and the MUC1 CT (CD8/MUC1). Extracellular treatment of HEK293-CD8/MUC1 cells with CD8 antibody induced intracellular Tyr phosphorylation of the MUC1 CT and activated ERK1/2, but not the p38, SAPK/JNK, or ERK5 MAP kinases. Moreover, phosphorylation of ERK1/2 was completely blocked using a CT deletion mutant or a mutant construct in which all Tyr residues in the CT were changed to Phe. These results establish that Tyr phosphorylation of the MUC1 CT is required for activation of a downstream ERK1/2 pathway.

摘要

MUC1是一种跨膜糖蛋白,表达于上皮细胞的顶端表面,具有细胞因子和生长因子受体的特征性结构特点。其细胞内的胞质尾(CT)包含多个氨基酸序列基序,一旦被磷酸化,就作为含SH2结构域蛋白的对接位点,介导信号转导。大多数研究MUC1信号传导的实验都集中在癌细胞上,在这些癌细胞中,MUC1过表达、糖基化异常且持续磷酸化。尚无研究确定其胞外域受到刺激后激活的信号通路。为了更好地理解MUC1的信号传导机制,我们用一个表达质粒稳定转染了HEK293细胞,该质粒编码一种嵌合蛋白,由CD8的胞外域和跨膜域以及MUC1的CT(CD8/MUC1)组成。用CD8抗体对HEK293-CD8/MUC1细胞进行胞外处理,可诱导MUC1 CT的细胞内酪氨酸磷酸化并激活ERK1/2,但不激活p38、SAPK/JNK或ERK5丝裂原活化蛋白激酶。此外,使用CT缺失突变体或CT中所有酪氨酸残基都被替换为苯丙氨酸的突变构建体,ERK1/2的磷酸化被完全阻断。这些结果表明,MUC1 CT的酪氨酸磷酸化是激活下游ERK1/2信号通路所必需的。

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