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采用 TaqMan 实时 PCR 技术对癌细胞及炎症刺激下乳铁蛋白和 δ-乳铁蛋白基因表达水平进行的鉴别和评估。

Discrimination and evaluation of lactoferrin and delta-lactoferrin gene expression levels in cancer cells and under inflammatory stimuli using TaqMan real-time PCR.

机构信息

Univ Lille Nord de France, 59000 Lille, France.

出版信息

Biometals. 2010 Jun;23(3):441-52. doi: 10.1007/s10534-010-9305-5. Epub 2010 Feb 14.

Abstract

The lactoferrin gene is known to be expressed either constitutively or under inducible conditions such as hormonal stimuli or inflammation. Its transcription from alternative promoters leads to two products, lactoferrin (Lf) and delta-lactoferrin (DeltaLf) mRNAs the expressions of which are altered during oncogenesis. The comparison of the two enhancer/promoter regions revealed that the two isoforms might be differentially trans-activated. Nevertheless, concomitant expression of both transcripts has been found in some normal tissues and in a subset of breast cancer cell lines and biopsies. Moreover, we found putative inflammatory response elements in both P1 and P2 promoter regions suggesting that both Lf and DeltaLf might be upregulated under inflammatory stimuli. Therefore, a duplex Taqman gene expression assay has been developed and used to profile mRNA expression of the Lf gene in the case of cancer and under inflammatory conditions. Discrimination between the two transcripts is achieved by using a primer pairs/probe set within exon 1beta for DeltaLf and a primer pairs/probe set within exon 1 and exon 2 for Lf. In this study, we confirmed that Lf/DeltaLf Taqman gene expression assay is a powerful tool to investigate the expression of both Lf and DeltaLf transcripts. We also showed that lymphocytes and leukocytes isolated from fresh human blood expressed an extremely high level of DeltaLf messengers. An extensive series of cancer cell lines has been studied confirming that both P1 and P2 promoter regions of the Lf gene are downregulated or silenced in the case of cancer. Furthermore, using stimulation by bacterial lipopolysaccharides (LPS), we showed that in MDA-MB-231 and HT-29 epithelial cells, Lf expression is strongly increased with a higher expression level in MDA-MB-231 whereas DeltaLf expression is not. These results suggest that the NF-kappaB/cRel response elements present in the P1 promoter region are functional whereas those present in the P2 promoter region are not and show that DeltaLf is not regulated in inflammatory conditions.

摘要

乳铁蛋白基因在受到激素刺激或炎症等诱导条件下表现为组成型或诱导型表达。其通过不同启动子转录产生两种产物,乳铁蛋白(Lf)和δ-乳铁蛋白(DeltaLf)mRNA,其表达在癌变过程中发生改变。对这两个增强子/启动子区域的比较表明,这两种同工型可能被不同程度地转录激活。然而,在一些正常组织和部分乳腺癌细胞系和活检中发现了两种转录本的同时表达。此外,我们在 P1 和 P2 启动子区域发现了潜在的炎症反应元件,表明在炎症刺激下 Lf 和 DeltaLf 可能都被上调。因此,开发了一种双 Taqman 基因表达检测方法,并用于在癌症和炎症条件下分析 Lf 基因的 mRNA 表达谱。通过使用针对 DeltaLf 的外显子 1beta 内的引物对/探针集和针对 Lf 的外显子 1 和 2 内的引物对/探针集来区分这两种转录本。在这项研究中,我们证实了 Lf/DeltaLf Taqman 基因表达检测是一种强大的工具,可以研究 Lf 和 DeltaLf 转录本的表达。我们还表明,从新鲜人血中分离的淋巴细胞和白细胞表达极高水平的 DeltaLf 信使。对广泛的一系列癌细胞系进行了研究,证实了 Lf 基因的 P1 和 P2 启动子区域在癌症情况下均下调或沉默。此外,使用细菌脂多糖(LPS)刺激,我们表明在 MDA-MB-231 和 HT-29 上皮细胞中,Lf 表达强烈增加,MDA-MB-231 中的表达水平更高,而 DeltaLf 表达则没有。这些结果表明,存在于 P1 启动子区域中的 NF-κB/cRel 反应元件是功能性的,而存在于 P2 启动子区域中的则不是,并且表明在炎症条件下 DeltaLf 不受调节。

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