首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Detection of Differentially Expressed Genes in an Isogenic Breast Metastasis Model using RNA Arbitrarily Primed-Polymerase Chain Reaction Coupled with Array Hybridization (RAP-Array)
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Detection of Differentially Expressed Genes in an Isogenic Breast Metastasis Model using RNA Arbitrarily Primed-Polymerase Chain Reaction Coupled with Array Hybridization (RAP-Array)

机译:使用RNA任意引发的聚合酶链反应与阵列杂交(RAP阵列)耦合在等基因乳腺癌转移模型中检测差异表达的基因

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摘要

To facilitate the study of the mechanisms of breast cancer metastasis we have previously characterized a pair of breast tumor cell lines that originate from the same breast tumor cell line MDA-MB-435, but which have diametrically opposite metastatic capabilities. These cell lines constitute a stable and accessible experimental system for the identification of metastasis-related genes and for the study of their role in the process of metastasis. In this study, we used a combination of RNA arbitrarily primed-polymerase chain reaction (RAP-PCR) fingerprinting and cDNA arrays (here termed “RAP-array”) to identify genes differentially expressed with respect to metastatic phenotype. RAP-PCR was used to generate radioactive probes of reduced complexity for hybridization to nylon membranes containing 588 cDNAs of known identity. Single RAP-PCR fingerprint probes hybridized from 61 (10.4%) to 116 (19.7%) of the filter array targets, with a signal detection overlap of ∼21%. A total of 344 (57%) of the 588 target genes were detected by five single RAP-PCR fingerprints. The advantage of using reduced complexity probes was highlighted by the fact that the combination of RAP probes before hybridization compromised the overall detection rate by up to 40%. Sequential application of RAP-PCR probes allowed the screening of a greater, and an alternative fraction of the transcript population than was achieved with a radiolabeled total cDNA probe. Verification by quantitative reverse transcriptase-PCR confirmed significantly increased expression of keratin 9 (>100-fold) in nonmetastatic breast tumor cells and of CD70 (fivefold) in metastatic cells. The differential expression of keratin 9 and CD70 was maintained between cells grown as primary xenografts in athymic mice. The RAP-array method enabled the detection of genes not revealed using other screening methods and that are candidates for further investigation in the context of metastatic phenotype.
机译:为了促进对乳腺癌转移机制的研究,我们先前已鉴定了一对源自相同乳腺癌细胞系MDA-MB-435的乳腺癌细胞系,但它们具有截然相反的转移能力。这些细胞系构成了一个稳定且易于使用的实验系统,用于鉴定与转移相关的基因并研究其在转移过程中的作用。在这项研究中,我们结合使用RNA任意引发的聚合酶链反应(RAP-PCR)指纹图谱和cDNA阵列(此处称为“ RAP阵列”)来鉴定相对于转移表型差异表达的基因。 RAP-PCR用于生成复杂性降低的放射性探针,用于与含有588个已知同一性cDNA的尼龙膜杂交。单个RAP-PCR指纹探针从61个(10.4%)到116个(19.7%)的过滤器阵列目标杂交,信号检测重叠约21%。通过五个RAP-PCR指纹图谱检测到588个靶基因中的344个(57%)。杂交前RAP探针的组合使总检测率降低了40%,这突出了使用降低复杂性的探针的优势。与放射性标记的总cDNA探针相比,RAP-PCR探针的顺序应用可以筛选出更大的,可替代的转录本部分。通过定量逆转录酶-PCR的验证证实了非转移性乳腺肿瘤细胞中角蛋白9的表达显着增加(> 100倍),而转移性细胞中CD70的表达显着增加(5倍)。在无胸腺小鼠中作为原代异种移植物生长的细胞之间,角蛋白9和CD70的差异表达得以维持。 RAP阵列方法能够检测未使用其他筛选方法发现的基因,这些基因在转移表型的背景下有待进一步研究。

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