Benavides-Serrato Angelica, Anderson Lauren, Holmes Brent, Cloninger Cheri, Artinian Nicholas, Bashir Tariq, Gera Joseph
Department of Medicine, David Geffen School of Medicine, University of California, Los Angeles, CA, USA ; Division of Hematology-Oncology, Greater Los Angeles Veterans Affairs Healthcare System, Los Angeles, CA, USA.
Division of Hematology-Oncology, Greater Los Angeles Veterans Affairs Healthcare System, Los Angeles, CA, USA.
Genes Cancer. 2014 Nov;5(11-12):393-406. doi: 10.18632/genesandcancer.41.
Dual-specificity phosphatases (DUSPs) dephosphorylate MAP kinases (MAPKs) resulting in their inactivation. Activation of MAPK signaling leads to enhanced DUSP expression, thus establishing feedback regulation of the MAPK pathway. The DUSPs are subject to regulation at the post-translational level via phosphorylation resulting in alterations of protein stability. Here we report that mTORC2 function leads to stabilization of the p38 MAPK phosphatase, DUSP10, thereby inhibiting p38 activity. We demonstrate that mTORC2 binds DUSP10 and phosphorylates DUSP10 on serine residues 224 and 230. These phosphorylation events block DUSP10 turnover resulting in inactivation of p38 signaling. We further show that insulin-stimulated PI3K/mTORC2 signaling regulates DUSP10 stability and p38 activity. Importantly, knockdown of DUSP10 or ectopic overexpression of nonphosphorylatable or phosphomimetic DUSP10 mutants was sufficient to confer differential mTOR kinase inhibitor responses to GBM cells in vitro and in murine xenografts. Finally, DUSP10 was shown to be overexpressed in a significant number of GBM patients. These data demonstrate the ability of the mTORC2 pathway to exert regulatory effects on the DUSP10/p38 feedback loop to control the cellular effects of mTOR kinase inhibitors in GBM and support the use of DUSP10 expression as a surrogate biomarker to predict responsiveness.
双特异性磷酸酶(DUSPs)使丝裂原活化蛋白激酶(MAPKs)去磷酸化,从而使其失活。MAPK信号通路的激活会导致DUSP表达增强,从而建立对MAPK通路的反馈调节。DUSPs在翻译后水平通过磷酸化受到调控,导致蛋白质稳定性发生改变。在此我们报告,mTORC2的功能导致p38 MAPK磷酸酶DUSP10稳定,从而抑制p38活性。我们证明mTORC2与DUSP10结合,并在丝氨酸残基224和230上使DUSP10磷酸化。这些磷酸化事件阻止了DUSP10的周转,导致p38信号通路失活。我们进一步表明,胰岛素刺激的PI3K/mTORC2信号通路调节DUSP10的稳定性和p38活性。重要的是,敲低DUSP10或异位过表达不可磷酸化或磷酸模拟的DUSP10突变体足以使体外培养的胶质母细胞瘤(GBM)细胞和小鼠异种移植瘤对mTOR激酶抑制剂产生不同的反应。最后,研究表明DUSP10在大量GBM患者中过表达。这些数据证明了mTORC2通路对DUSP10/p38反馈环发挥调节作用,以控制mTOR激酶抑制剂对GBM的细胞效应,并支持将DUSP10表达用作预测反应性的替代生物标志物。