首页> 外文期刊>Molecular cancer research: MCR >A nonclassic CCAAT enhancer element binding protein binding site contributes to alpha-methylacyl-CoA racemase expression in prostate cancer.
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A nonclassic CCAAT enhancer element binding protein binding site contributes to alpha-methylacyl-CoA racemase expression in prostate cancer.

机译:非经典的CCAAT增强子结合蛋白结合位点有助于前列腺癌中的α-甲基酰基-CoA消旋酶表达。

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摘要

Alpha-methylacyl-CoA racemase (AMACR), an enzyme involved in branched-chain fatty acid beta-oxidation that is normally expressed at high levels in human liver, is specifically and consistently overexpressed at both mRNA and protein levels in human prostate cancer and potentially other cancer types. To characterize the mechanisms underlying transcriptional regulation of AMACR at the genetic and epigenetic levels, we performed a series of methylation and reporter assays in prostate cancer tissues and cell lines. The results ruled out altered methylation patterns as the cause of overexpression in prostate cancer cells. However, promoter deletion analysis identified an 8-bp nonclassic CCAAT enhancer element located approximately 80 bp upstream of the transcriptional initiation site that is responsible for AMACR expression in both prostate cancer cell lines and cell lines of liver origin. Deletion or mutation of this element completely abolished AMACR promoter activity. Ectopic expression of CCAAT/enhancer binding protein beta increased luciferase activity driven by a wild-type AMACR promoter sequence but not by the sequence in which the putative CCAAT/enhancer binding protein binding element had been mutated. These results implicate a nonclassic CCAAT enhancer element in the AMACR gene promoter as playing a critical role in the regulation of AMACR gene expression.
机译:α-甲基酰基辅酶A消旋酶(AMACR)是一种参与支链脂肪酸β-氧化的酶,通常在人肝中高水平表达,在人前列腺癌的mRNA和蛋白水平上都始终如一地过表达,并且可能其他癌症类型。为了表征在遗传和表观遗传水平上AMACR转录调控的基础机制,我们在前列腺癌组织和细胞系中进行了一系列甲基化和报告基因检测。结果排除了甲基化模式改变是前列腺癌细胞过度表达的原因。然而,启动子缺失分析鉴定了位于转录起始位点上游约80 bp上游的8 bp非经典CCAAT增强子元件,该元件负责前列腺癌细胞系和肝起源细胞系中的AMACR表达。该元件的删除或突变完全消除了AMACR启动子活性。 CCAAT /增强子结合蛋白β的异位表达提高了萤光素酶的活性,该酶由野生型AMACR启动子序列驱动,而不是由假定的CCAAT /增强子结合蛋白结合元件突变的序列驱动。这些结果暗示了在AMACR基因启动子中的非经典CCAAT增强子在调控AMACR基因表达中起关键作用。

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