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The ErbB2/Neu/HER2 receptor is a new calmodulin-binding protein

机译:ErbB2 / Neu / HER2受体是一种新的钙调蛋白结合蛋白

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pWe have demonstrated previously that the EGFR (epidermal growth factor receptor) is a calmodulin (CaM)-binding protein. To establish whether or not the related receptor ErbB2/Neu/HER2 also binds CaM, we used human breast adenocarcinoma SK-BR-3 cells, because these cells overexpress this receptor thus facilitating the detection of this interaction. In the present paper, we show that ErbB2 could be pulled-down using CaM–agarose beads in a Casup2+/sup-dependent manner, as detected by Western blot analysis using an anti-ErbB2 antibody. ErbB2 was also isolated by Casup2+/sup-dependent CaM-affinity chromatography. We also demonstrate using an overlay technique with biotinylated CaM that CaM binds directly to the immunoprecipitated ErbB2. The binding of biotinylated CaM to ErbB2 depends strictly on the presence of Casup2+/sup, since it was prevented by the presence of EGTA. Moreover, the addition of an excess of free CaM prevents the binding of its biotinylated form, demonstrating that this was a specific process. We excluded any interference with the EGFR, as SK-BR-3 cells express considerably lower levels of this receptor, and no detectable EGFR signal was observed by Western blot analysis in the immunoprecipitated ErbB2 preparations used to perform the overlay assays with biotinylated CaM. We also demonstrate that treating living cells with W7 [iN/i-(6-aminohexyl)-5-chloro-1-naphthalenesulphonamide], a cell-permeant CaM antagonist, down-regulates ErbB2 phosphorylation, and show that W7 does not interfere non-specifically with the activity of ErbB tyrosine kinases. We also show that W7 inhibits the phosphorylation (activation) of both ERK1/2 (extracellular-signal-regulated kinases 1 and 2) and Akt/PKB (protein kinase B), in accordance with the inhibition observed in ErbB2 phosphorylation. In contrast, W7 treatment increased the phosphorylation (activation) of CREB (cAMP-response-element-binding protein) and ATF1 (activating transcription factor-1), two Casup2+/sup-sensitive transcription factors that operate downstream of these ErbB2 signalling pathways, most likely because of the absence of calcineurin activity. We conclude that ErbB2 is a new CaM-binding protein, and that CaM plays a role in the regulation of this receptor and its downstream signalling pathways iin vivo/i./p
机译:>我们先前已经证明EGFR(表皮生长因子受体)是钙调蛋白(CaM)结合蛋白。为了确定相关受体ErbB2 / Neu / HER2是否也与CaM结合,我们使用了人类乳腺癌细胞SK-BR-3,因为这些细胞过表达该受体,因此有助于检测这种相互作用。在本文中,我们证明,使用抗ErbB2抗体的Western blot分析表明,可以使用CaM–agarose珠以Ca 2 + 依赖的方式下拉ErbB2。还通过依赖Ca 2 + 的CaM亲和色谱法分离了ErbB2。我们还证明了使用生物素化CaM的覆盖技术,即CaM直接结合到免疫沉淀的ErbB2。生物素化的CaM与ErbB2的结合严格取决于Ca 2 + 的存在,因为它可以被EGTA阻止。此外,添加过量的游离CaM会阻止其生物素化形式的结合,表明这是一个特定的过程。我们排除了对EGFR的任何干扰,因为SK-BR-3细胞表达的该受体水平低得多,并且在用生物素化CaM进行覆盖分析的免疫沉淀ErbB2制剂中,通过Western blot分析未观察到可检测到的EGFR信号。我们还证明了用可渗透细胞的CaM拮抗剂W7 [ N -(6-氨基己基)-5-氯-1-萘磺酰胺]处理活细胞,可下调ErbB2磷酸化,并表明W7不会非特异性地干扰ErbB酪氨酸激酶的活性。我们还显示,根据在ErbB2磷酸化中观察到的抑制作用,W7抑制ERK1 / 2(细胞外信号调节的激酶1和2)和Akt / PKB(蛋白激酶B)的磷酸化(激活)。相比之下,W7处理增加了CREB(cAMP反应元件结合蛋白)和ATF1(激活转录因子-1)(两个对Ca 2 + 起作用的转录因子)的磷酸化(激活)这些ErbB2信号通路的下游,很可能是由于缺乏钙调神经磷酸酶活性所致。我们得出的结论是,ErbB2是一种新的CaM结合蛋白,并且CaM在体内对该受体及其下游信号通路的调节中发挥了作用。

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