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赖氨酸特异性去甲基化酶1通过调控前列腺癌细胞中p85的表达激活PI3K/AKT信号通路。

LSD1 Activates PI3K/AKT Signaling Through Regulating p85 Expression in Prostate Cancer Cells.

作者信息

Wang Zifeng, Gao Shuai, Han Dong, Han Wanting, Li Muqing, Cai Changmeng

机构信息

Center for Personalized Cancer Therapy, University of Massachusetts Boston, Boston, MA, United States.

出版信息

Front Oncol. 2019 Aug 2;9:721. doi: 10.3389/fonc.2019.00721. eCollection 2019.

Abstract

Lysine specific demethylase 1 (LSD1) functions as a transcriptional repressor through demethylating active histone marks such as mono- or di-methylated histone 3 lysine 4 (H3K4) and interacting with histone deacetylases. However, LSD1 can also act as an activator through demethylating repressive histone marks and possibly non-histone proteins. In prostate cancer (PCa) cells, LSD1 mediates the transcriptional activity of androgen receptor (AR), a ligand dependent nuclear transcription factor that drives PCa initiation and progression to the castration-resistant prostate cancer (CRPC). However, it is unclear whether LSD1 also regulates other growth promoting pathways independent of AR signaling in PCa cells. In this study, we show that LSD1 can activate PI3K/AKT pathways in absence of androgen stimulation, and we further demonstrate that LSD1 transcriptionally regulates the expression of PI3K regulatory subunit, p85, possibly through epigenetic reprogramming of enhancer landscape in PCa cells. Our study suggests that LSD1 has dual functions in promoting PCa development, that it enhances AR signaling through its coactivator function, and that it activates PI3K/AKT signaling through increasing p85 gene expression.

摘要

赖氨酸特异性去甲基化酶1(LSD1)通过去除活性组蛋白标记(如单甲基化或二甲基化的组蛋白3赖氨酸4(H3K4))并与组蛋白脱乙酰酶相互作用,发挥转录抑制因子的作用。然而,LSD1也可以通过去除抑制性组蛋白标记以及可能的非组蛋白蛋白质,作为激活剂发挥作用。在前列腺癌细胞中,LSD1介导雄激素受体(AR)的转录活性,AR是一种依赖配体的核转录因子,驱动前列腺癌的起始并进展为去势抵抗性前列腺癌(CRPC)。然而,尚不清楚LSD1是否也在前列腺癌细胞中独立于AR信号通路调节其他促进生长的途径。在本研究中,我们表明LSD1在无雄激素刺激的情况下可以激活PI3K/AKT通路,并且我们进一步证明LSD1可能通过对前列腺癌细胞中增强子景观的表观遗传重编程,转录调节PI3K调节亚基p85的表达。我们的研究表明,LSD1在促进前列腺癌发展中具有双重功能,它通过其共激活剂功能增强AR信号通路,并且通过增加p85基因表达激活PI3K/AKT信号通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3100/6688199/da764b0e8349/fonc-09-00721-g0001.jpg

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