Akinmade D, Talukder A H, Zhang Y, Luo W-M, Kumar R, Hamburger A W
Department of Pathology, University of Maryland, Baltimore, MD, USA.
Br J Cancer. 2008 Mar 25;98(6):1132-40. doi: 10.1038/sj.bjc.6604261. Epub 2008 Feb 19.
The ErbB3 binding protein (Ebp1) is a transcriptional corepressor that inhibits the activity of proliferation-associated genes and the growth of human breast cancer cell lines. Treatment of breast cancer cells with the ErbB3 ligand heregulin (HRG) results in increased phosphorylation of Ebp1 and transcriptional repression. The p21-activated serine/threonine kinase 1 (PAK1), which plays an important role in breast cancer progression and resistance to the anti-oestrogen tamoxifen, is also activated by HRG. We therefore examined the ability of PAK1 to phosphorylate and regulate the function of Ebp1. We found that PAK1 phosphorylated Ebp1 in vitro and mapped the phosphorylation site to threonine 261. Both HRG treatment and expression of a constitutively activated PAK1 in MCF-7 breast cancer cells enhanced threonine phosphorylation of Ebp1. In MCF-7 cells, ectopically expressed Ebp1 bound endogenous PAK1 and this association was enhanced by treatment with HRG. Mutation of the PAK1 phosphorylation site to glutamic acid, mimicking a phosphorylated state, completely abrogated the ability of Ebp1 to repress transcription, inhibit growth of breast cancer cell lines and contribute to tamoxifen sensitivity. These studies demonstrate for the first time that Ebp1 is a substrate of PAK1 and the importance of the PAK1 phosphorylation site for the functional activity of Ebp1 in breast cancer cells.
ErbB3结合蛋白(Ebp1)是一种转录共抑制因子,可抑制增殖相关基因的活性以及人乳腺癌细胞系的生长。用ErbB3配体神经调节蛋白(HRG)处理乳腺癌细胞会导致Ebp1磷酸化增加和转录抑制。在乳腺癌进展以及对抗雌激素他莫昔芬的耐药性中起重要作用的p21激活的丝氨酸/苏氨酸激酶1(PAK1),也可被HRG激活。因此,我们研究了PAK1磷酸化和调节Ebp1功能的能力。我们发现PAK1在体外使Ebp1磷酸化,并将磷酸化位点定位到苏氨酸261。HRG处理以及在MCF-7乳腺癌细胞中表达组成型激活的PAK1均增强了Ebp1的苏氨酸磷酸化。在MCF-7细胞中,异位表达的Ebp1与内源性PAK1结合,并且这种结合通过HRG处理而增强。将PAK1磷酸化位点突变为谷氨酸,模拟磷酸化状态,完全消除了Ebp1抑制转录、抑制乳腺癌细胞系生长以及促进他莫昔芬敏感性的能力。这些研究首次证明Ebp1是PAK1的底物,并且PAK1磷酸化位点对Ebp1在乳腺癌细胞中的功能活性具有重要意义。