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首页> 外文期刊>The Journal of Nutritional Biochemistry >Profiling of zinc-altered gene expression in human prostate normal vs. cancer cells: a time course study
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Profiling of zinc-altered gene expression in human prostate normal vs. cancer cells: a time course study

机译:人类前列腺正常细胞与癌细胞中锌改变的基因表达谱分析:一个时程研究

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We have demonstrated that zinc exposure induces apoptosis in human prostate cancer cells (PC-3) and benign hyperplasia cells (BPH), but not in normal prostate cells (HPR-1). However, the mechanisms underlying the effects of zinc on prostate cancer cell growth and zinc homeostasis remain unclear. To explore the zinc effect on gene expression profiles in normal (HPR-1) and malignant prostate cells (PC-3), we conducted a time course study of Zn treatment with microarray analysis. Microarray data were evaluated and profiled using computational approach for the primary and secondary data analyses. Final analyses were focused on the genes (1) highly sensitive to zinc; (2) associated with zinc homeostasis, i.e., metallothioneins (MTs), solute zinc carriers (ZIPs) and zinc exporters (ZnTs); (3) relevant to several oncogenic pathways. Zinc-mediated mRNA levels of MT isotypes were further validated by semi-quantitative RT-PCR. Results showed that zinc effect on genome-wide expression patterns was cell-type specific, and zinc appeared to have mainly down-regulatory effects on thousands of genes (1953 in HPR-1; 3534 in PC-3) with a threshold of pl2.5-fold, while fewer genes were up-regulated (872 in HPR-1; 571 in PC-3). The patterns of zinc effect on functional MT genes' expression provided evidence for the cell type-dependent zinc accumulation and zinc-induced apoptosis in prostate cells. In PC-3 cells, zinc significantly up-regulated the expression of MT-1 isotypes MT-1J and MT-1M, denoted previously as nonfunctional MT genes, and now a depictive molecular structure of MT-1J was proposed. Examination of genes involved in oncogenic pathways indicated that certain genes, e.g., Fos, Akt1, Jak3 and PI3K, were highly regulated by zinc with cell-type specificity. This work provided an extensive database on zinc-related prostate cancer research. The strategy of data analysis was devoted to finding genes highly sensitive to Zn, and the genes associated with zinc accumulation and zinc-induced apoptosis. The results indicate that zinc regulation of gene expression is cell-type specific, and MT genes play important roles in prostate malignancy.
机译:我们已经证明,锌暴露可诱导人前列腺癌细胞(PC-3)和良性增生细胞(BPH)凋亡,但不会诱导正常前列腺细胞(HPR-1)凋亡。然而,锌对前列腺癌细胞生长和锌稳态的潜在作用机理尚不清楚。为了探讨锌对正常(HPR-1)和恶性前列腺细胞(PC-3)基因表达谱的影响,我们进行了微阵列分析对锌治疗的时程研究。使用计算机方法对微阵列数据进行评估和分析,以进行主要和次要数据分析。最终分析的重点是基因(1)对锌高度敏感; (2)与锌稳态有关,即金属硫蛋白(MTs),溶质锌载体(ZIPs)和锌出口剂(ZnTs); (3)与几种致癌途径有关。锌介导的MT同种型的mRNA水平通过半定量RT-PCR进一步验证。结果表明,锌对全基因组表达模式的影响是细胞类型特异性的,锌似乎对数以千计的基因(pl2的阈值)具有主要的下调作用(HPR-1中为1953; PC-3中为3534)。 5倍,而较少的基因被上调(HPR-1中为872; PC-3中为571)。锌对功能性MT基因表达的影响模式为前列腺细胞中依赖细胞类型的锌积累和锌诱导的细胞凋亡提供了证据。在PC-3细胞中,锌显着上调了MT-1同种型MT-1J和MT-1M的表达,以前称为无功能MT基因,现在有人提出了MT-1J的分子结构描述。对涉及致癌途径的基因的检查表明,某些基因(例如Fos,Akt1,Jak3和PI3K)受到锌的高度调控,具有细胞类型的特异性。这项工作提供了有关锌相关前列腺癌研究的广泛数据库。数据分析策略致力于寻找对锌高度敏感的基因,以及与锌积累和锌诱导的细胞凋亡相关的基因。结果表明锌调节基因表达是细胞类型特异性的,MT基因在前列腺恶性肿瘤中起重要作用。

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