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首页> 外文期刊>Molecular biology of the cell >Muc4–ErbB2 Complex Formation and Signaling in Polarized CACO-2 Epithelial Cells Indicate That Muc4 Acts as an Unorthodox Ligand for ErbB2
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Muc4–ErbB2 Complex Formation and Signaling in Polarized CACO-2 Epithelial Cells Indicate That Muc4 Acts as an Unorthodox Ligand for ErbB2

机译:Muc4-ERBB2偏光中的复合物形成和信号传导在偏振的Caco-2上皮细胞中表明MUC4充当ErbB2的非正统配体

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Muc4 serves as an intramembrane ligand for the receptor tyrosine kinase ErbB2. The time to complex formation and the stoichiometry of the complex were determined to be <15 min and 1:1 by analyses of Muc4 and ErbB2 coexpressed in insect cells and A375 tumor cells. In polarized CACO-2 cells, Muc4 expression causes relocalization of ErbB2, but not its heterodimerization partner ErbB3, to the apical cell surface, effectively segregating the two receptors. The apically located ErbB2 is phosphorylated on tyrosines 1139 and 1248. The phosphorylated ErbB2 in CACO-2 cells recruits the cytoplasmic adaptor protein Grb2, consistent with previous studies showing phosphotyrosine 1139 to be a Grb2 binding site. To address the issue of downstream signaling from apical ErbB2, we analyzed the three MAPK pathways of mammalian cells, Erk, p38, and JNK. Consistent with the more differentiated phenotype of the CACO-2 cells, p38 phosphorylation was robustly increased by Muc4 expression, with a consequent activation of Akt. In contrast, Erk and JNK phosphorylation was not changed. The ability of Muc4 to segregate ErbB2 and other ErbB receptors and to alter downstream signaling cascades in polarized epithelial cells suggests that it has a role in regulating ErbB2 in differentiated epithelia.
机译:MUC4用作受体酪氨酸激酶ERBB2的肠内配体。通过在昆虫细胞和A375肿瘤细胞中共同的MUC4和ERBB2,确定复杂形成和复合物的化学计量和1:1的时间。在极化的Caco-2细胞中,MUC4表达导致ERBB2的重定化,但不是其异二聚合伴侣ERBB3,对顶部细胞表面有效地隔离两种受体。顶部定位的ERBB2在酪氨酸1139和1248上磷酸化。CACO-2细胞中的磷酸化ERBB2促进细胞质衔接子蛋白GRB2,与先前的研究表明磷酸酪氨酸1139是GRB2结合位点。要解决从顶端ERBB2的下游信令问题,我们分析了哺乳动物细胞,ERK,P38和JNK的三种MAPK途径。与CaCO-2细胞的更分散的表型一致,通过MUC 4表达鲁棒地增加P38磷酸化,随后的AKT活化。相比之下,ERK和JNK磷酸化没有改变。 MUC4对ERBB2和其他ERBB受体进行分离的能力并改变偏振上皮细胞中的下游信号传导级联表明它在调节ERBB2在分化上皮细胞中具有作用。

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