首页> 外文期刊>The Journal of Biochemistry >Increased acid ceramidase expression depends on upregulation of androgen-dependent deubiquitinases, USP2, in a human prostate cancer cell line, LNCaP
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Increased acid ceramidase expression depends on upregulation of androgen-dependent deubiquitinases, USP2, in a human prostate cancer cell line, LNCaP

机译:酸性神经酰胺酶表达的增加取决于人类前列腺癌细胞系LNCaP中雄激素依赖性去泛素酶USP2的上调

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Acid ceramidase (ACDase) metabolizes ceramide to sphingosine, leading to sphingosine 1-phosphate production. Reportedly, ACDase has been upregulated in prostate cancer. However, its regulatory mechanism remains unclear. LNCaP (androgen-sensitive prostate cancer cell line) but not PC3 and DU-145, (androgen-unresponsive cell lines) exhibited the highest ACDase protein. Among three cell lines, ASAH1 mRNA level was not correlated with ACDase protein expression, and the 5'-promoter activity did not show androgen dependency, suggesting the post-transcriptional regulation of ACDase in LNCaP cells. Based on these results, LNCaP was analysed further. Casodex, androgen receptor antagonist, and charcoal-stripped FCS (CS-FCS) decreased ACDase protein and activity, whereas dihydrotestosterone in CS-FCS culture increased ACDase protein and enzyme activity. MG132, a proteasome inhibitor, prevented the decrease of ACDase protein when cultured in CS-FCS, suggesting the involvement of ubiquitin/proteasome system. Reportedly, USP2, a deubiquitinase, plays an important role in LNCaP cells. USP2 siRNA decreased ACDase protein, whereas USP2 overexpression increased ACDase protein of LNCaP cells. However, SKP2, an ubiquitin E3 ligase known to be active in prostate cancer, did not affect androgen-dependent ACDase expression in LNCaP cells. Thus, ACDase regulation by androgen in androgen-sensitive LNCaP cells is mainly due to its prolonged protein half-life by androgen-stimulated USP2 expression.
机译:酸性神经酰胺酶(ACDase)将神经酰胺代谢为鞘氨醇,导致产生1磷酸鞘氨醇。据报道,ACDase在前列腺癌中被上调。但是,其监管机制仍不清楚。 LNCaP(对雄激素敏感的前列腺癌细胞系)而非PC3和DU-145(对雄激素无反应的细胞系)表现出最高的ACDase蛋白。在三种细胞系中,ASAH1 mRNA水平与ACDase蛋白表达无关,并且5'启动子活性未显示雄激素依赖性,这提示LNCaP细胞中ACDase的转录后调控。基于这些结果,对LNCaP进行了进一步分析。 Casodex,雄激素受体拮抗剂和木炭剥离的FCS(CS-FCS)降低了ACDase的蛋白和酶活性,而CS-FCS培养物中的二氢睾丸激素则增加了ACDase的蛋白和酶活性。蛋白酶体抑制剂MG132在CS-FCS中培养时阻止了ACDase蛋白的减少,提示泛素/蛋白酶体系统的参与。据报道,去泛素酶USP2在LNCaP细胞中起重要作用。 USP2 siRNA减少ACDase蛋白,而USP2过表达增加LNCaP细胞的ACDase蛋白。但是,SKP2是一种在前列腺癌中活跃的遍在蛋白E3连接酶,它不会影响LNCaP细胞中雄激素依赖性ACDase的表达。因此,雄激素敏感的LNCaP细胞中雄激素对ACDase的调节主要是由于雄激素刺激的USP2表达延长了其蛋白半衰期。

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