Boulding Tara, Wu Fan, McCuaig Robert, Dunn Jennifer, Sutton Christopher R, Hardy Kristine, Tu Wenjuan, Bullman Amanda, Yip Desmond, Dahlstrom Jane E, Rao Sudha
Health Research Institute, Faculty of ESTeM, University of Canberra, Bruce, ACT, 2617, Australia.
Anatomical Pathology, ACT Pathology, The Canberra Hospital, Garran ACT, 2605, Australia.
PLoS One. 2016 Feb 9;11(2):e0148065. doi: 10.1371/journal.pone.0148065. eCollection 2016.
Dual-specificity phosphatases (DUSPs) dephosphorylate threonine/serine and tyrosine residues on their substrates. Here we show that DUSP1, DUSP4, and DUSP6 are involved in epithelial-to-mesenchymal transition (EMT) and breast cancer stem cell (CSC) regulation. DUSP1, DUSP4, and DUSP6 are induced during EMT in a PKC pathway signal-mediated EMT model. We show for the first time that the key chromatin-associated kinase PKC-θ directly regulates a subset of DUSP family members. DUSP1, DUSP4, and DUSP6 globally but differentially co-exist with enhancer and permissive active histone post-translational modifications, suggesting that they play distinct roles in gene regulation in EMT/CSCs. We show that nuclear DUSP4 associates with the key acetyltransferase p300 in the context of the chromatin template and dynamically regulates the interplay between two key phosphorylation marks: the 1834 (active) and 89 (inhibitory) residues central to p300's acetyltransferase activity. Furthermore, knockdown with small-interfering RNAs (siRNAs) shows that DUSP4 is required for maintaining H3K27ac, a mark mediated by p300. DUSP1, DUSP4, and DUSP6 knockdown with siRNAs shows that they participate in the formation of CD44hi/CD24lo/EpCAM+ breast CSCs: DUSP1 knockdown reduces CSC formation, while DUSP4 and DUSP6 knockdown enhance CSC formation. Moreover, DUSP6 is overexpressed in patient-derived HER2+ breast carcinomas compared to benign mammary tissue. Taken together, these findings illustrate novel pleiotropic roles for DUSP family members in EMT and CSC regulation in breast cancer.
双特异性磷酸酶(DUSPs)使其底物上的苏氨酸/丝氨酸和酪氨酸残基去磷酸化。在此我们表明,DUSP1、DUSP4和DUSP6参与上皮-间质转化(EMT)和乳腺癌干细胞(CSC)调控。在PKC途径信号介导的EMT模型中,EMT过程中会诱导DUSP1、DUSP4和DUSP6的表达。我们首次表明,关键的染色质相关激酶PKC-θ直接调控DUSP家族成员的一个亚群。DUSP1、DUSP4和DUSP6在全局范围内但存在差异地与增强子以及允许的活性组蛋白翻译后修饰共存,这表明它们在EMT/CSCs的基因调控中发挥不同作用。我们表明,在染色质模板的背景下,核内DUSP4与关键的乙酰转移酶p300相关联,并动态调节两个关键磷酸化标记之间的相互作用:即对p300乙酰转移酶活性至关重要的1834(活性)和89(抑制性)残基。此外,用小干扰RNA(siRNAs)进行敲低实验表明,DUSP4是维持由p300介导的标记H3K27ac所必需的。用siRNAs敲低DUSP1、DUSP4和DUSP6表明,它们参与CD44hi/CD24lo/EpCAM+乳腺癌干细胞的形成:敲低DUSP1会减少干细胞形成,而敲低DUSP4和DUSP6则会增强干细胞形成。此外,与良性乳腺组织相比,DUSP6在患者来源的HER2+乳腺癌中过表达。综上所述,这些发现阐明了DUSP家族成员在乳腺癌的EMT和CSC调控中具有新的多效性作用。