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首页> 外文期刊>Breast Cancer Research >Glucocorticoid receptors are required effectors of TGFβ1-induced p38 MAPK signaling to advanced cancer phenotypes in triple-negative breast cancer
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Glucocorticoid receptors are required effectors of TGFβ1-induced p38 MAPK signaling to advanced cancer phenotypes in triple-negative breast cancer

机译:糖皮质激素受体是TGFβ1诱导的p38 mapk信号传导至三重阴性乳腺癌中晚期癌症表型的效果

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Altered signaling pathways typify breast cancer and serve as direct inputs to steroid hormone receptor sensors. We previously reported that phospho-Ser134-GR (pS134-GR) species are elevated in triple-negative breast cancer (TNBC) and cooperate with hypoxia-inducible factors, providing a novel avenue for activation of GR in response to local or cellular stress. We probed GR regulation by factors (cytokines, growth factors) that are rich within the tumor microenvironment (TME). TNBC cells harboring endogenous wild-type (wt) or S134A-GR species were created by CRISPR/Cas knock-in and subjected to transwell migration, invasion, soft-agar colony formation, and tumorsphere assays. RNA-seq was employed to identify pS134-GR target genes that are regulated both basally (intrinsic) or by TGFβ1 in the absence of exogenously added GR ligands. Regulation of selected basal and TGFβ1-induced pS134-GR target genes was validated by qRT-PCR and chromatin immunoprecipitation assays. Bioinformatics tools were used to probe public data sets for expression of pS134-GR 24-gene signatures. In the absence of GR ligands, GR is transcriptionally activated via p38-dependent phosphorylation of Ser134 as a mechanism of homeostatic stress-sensing and regulated upon exposure of TNBC cells to TME-derived agents. The ligand-independent pS134-GR transcriptome encompasses TGFβ1 and MAPK signaling gene sets associated with TNBC cell survival and migration/invasion. Accordingly, pS134-GR was essential for TNBC cell anchorage-independent growth in soft-agar, migration, invasion, and tumorsphere formation, an in vitro readout of cancer stemness properties. Both pS134-GR and expression of the MAPK-scaffolding molecule 14-3-3ζ were essential for a functionally intact p38 MAPK signaling pathway downstream of MAP3K5/ASK1, indicative of a feedforward signaling loop wherein self-perpetuated GR phosphorylation enables cancer cell autonomy. A 24-gene pS134-GR-dependent signature induced by TGFβ1 predicts shortened overall survival in breast cancer patients. Phospho-S134-GR is a critical downstream effector of p38 MAPK signaling and TNBC migration/invasion, survival, and stemness properties. Our studies define a ligand-independent role for GR as a homeostatic “sensor” of intrinsic stimuli as well as extrinsic factors rich within the TME (TGFβ1) that enable potent activation of the p38 MAPK stress-sensing pathway and nominate pS134-GR as a therapeutic target in aggressive TNBC.
机译:改变的信令途径代表乳腺癌,并用作针对类固醇激素受体传感器的直接输入。我们之前报道,磷酸-Ser134-GR(PS134-GR)物种在三阴性乳腺癌(TNBC)中升高,并与缺氧诱导因子合作,为局部或细胞应激提供了一种用于激活GR的新途径。我们通过富含肿瘤微环境(TME)内的因素(细胞因子,生长因子)进行遗传调节。通过CRISPR / CAS敲入和进行Transwell迁移,侵袭,软琼脂菌落形成和肿瘤椎间孢子测定,产生含内源性野生型(WT)或S134A-GR物种的TNBC细胞。使用RNA-SEQ鉴定PS134-GR靶基因,其在没有外源添加的GR配体的情况下,在没有外源添加的GR配体的情况下被视为(内在)或通过TGFβ1调节。通过QRT-PCR和染色质免疫沉淀测定验证所选基础和TGFβ1诱导的PS134-GR靶基因的调节。生物信息学工具用于探测PS134-GR 24-基因特征的表达的公共数据集。在没有GR配体的情况下,通过SER134的P38依赖性磷酸化转录激活GR作为稳态应激感应的机制,并在暴露TNBC细胞到TME衍生的药剂时受到调节。邻无依赖的PS134-GR转录组组包括与TNBC细胞存活和迁移/侵袭相关的TGFβ1和MAPK信号传导基因。因此,PS134-GR对于软琼脂,迁移,侵袭和肿瘤孢子酰胺的无关生长是必不可少的,癌症茎秆特性的体外读数。 PS134-GR和MAPK - 脚手架分子的表达均对于MAP3K5 / Ask1下游的功能完整的P38 MAPK信号通路是必不可少的,该通知环形是前馈信号环,其中自我长久的GR磷酸化能够实现癌细胞自主权。 TGFβ1诱导的24-基因PS134-GR依赖性签名预测乳腺癌患者的整体存活率缩短。磷酸-S134-GR是P38 MAPK信号传导和TNBC迁移/侵袭,存活和茎秆特性的临界下游效应器。我们的研究为GR的配体独立的作用定义为具有内在刺激的稳态“传感器”以及富含TME(TGFβ1)的外在因素,使得P38 MAPK应激感应途径的有效激活,并提名PS134-GR作为一个侵略性TNBC中的治疗靶标。

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