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MAPK4 promotes prostate cancer by concerted activation of androgen receptor and AKT

机译:MAPK4通过雄激素受体和AKT的激活来促进前列腺癌

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摘要

Prostate cancer (PCa) is the second leading cause of cancer death in American men. Androgen receptor (AR) signaling is essential for PCa cell growth/survival and remains a key therapeutic target for lethal castration-resistant PCa (CRPC). GATA2 is a pioneer transcription factor crucial for inducing AR expression/activation. We recently reported that MAPK4, an atypical MAPK, promotes tumor progression via noncanonical activation of AKT. Here, we demonstrated that MAPK4 activated AR by enhancing GATA2 transcriptional expression and stabilizing GATA2 protein through repression of GATA2 ubiquitination/degradation. MAPK4 expression correlated with AR activation in human CRPC. Concerted activation of both GATA2/AR and AKT by MAPK4 promoted PCa cell proliferation, anchorage-independent growth, xenograft growth, and castration resistance. Conversely, knockdown of MAPK4 decreased activation of both AR and AKT and inhibited PCa cell and xenograft growth, including castration-resistant growth. Both GATA2/AR and AKT activation were necessary for MAPK4 tumor-promoting activity. Interestingly, combined overexpression of GATA2 plus a constitutively activated AKT was sufficient to drive PCa growth and castration resistance, shedding light on an alternative, MAPK4-independent tumor-promoting pathway in human PCa. We concluded that MAPK4 promotes PCa growth and castration resistance by cooperating parallel pathways of activating GATA2/AR and AKT and that MAPK4 is a novel therapeutic target in PCa, especially CRPC.
机译:前列腺癌(PCA)是美国男子癌症死亡的第二个主要原因。雄激素受体(AR)信号传导对于PCA细胞生长/存活至关重要,并且仍然是致死阉割PCA(CRPC)的关键治疗靶标。 GATA2是诱导AR表达/激活的先驱转录因子至关重要。我们最近报道了一种非典型地图K4,通过非甘露透化的AKT激活肿瘤进展促进肿瘤进展。在这里,我们证明了通过通过抑制GATA2泛素化/降解来增强GATA2转录表达和稳定GATA2蛋白来激活AR。 MAPK4表达与人类CRPC中的AR激活相关。通过MAPK4齐齐欲的激活GATA2 / AR和AKT促进了PCA细胞增殖,锚固无关的生长,异种移植物生长和阉割性。相反,MAPK4的敲低降低了AR和AKT的激活,并抑制了PCA细胞和异种移植的生长,包括抗阉割的生长。 GATA2 / AR和AKT激活都是MAPK4肿瘤促进活性所必需的。有趣的是,GATA2加上组成型活化的AKT的组合过表达足以推动PCA生长和阉割性,脱落在人PCA中的替代,MAPK4独立的肿瘤促进途径上。我们得出结论,MAPK4通过协同激活GATA2 / AR和AKT的平行途径来促进PCA生长和阉割性,并且MAPK4是PCA,尤其是CRPC的新型治疗靶标。

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