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基因表达的大规模序列分析揭示了在卵巢癌中差异表达的基因。

Large-scale serial analysis of gene expression reveals genes differentially expressed in ovarian cancer.

作者信息

Hough C D, Sherman-Baust C A, Pizer E S, Montz F J, Im D D, Rosenshein N B, Cho K R, Riggins G J, Morin P J

机构信息

Laboratory of Biological Chemistry, Gerontology Research Center, National Institute on Aging, Baltimore, Maryland 21224, USA.

出版信息

Cancer Res. 2000 Nov 15;60(22):6281-7.

Abstract

Difficulties in the detection, diagnosis, and treatment of ovarian cancer result in an overall low survival rate of women with this disease. A better understanding of the pathways involved in ovarian tumorigenesis will likely provide new targets for early and effective intervention. Here, we have used serial analysis of gene expression (SAGE) to generate global gene expression profiles from various ovarian cell lines and tissues, including primary cancers, ovarian surface epithelia cells, and cystadenoma cells. The profiles were used to compare overall patterns of gene expression and to identify differentially expressed genes. We have sequenced a total of 385,000 tags, yielding >56,000 genes expressed in 10 different libraries derived from ovarian tissues. In general, ovarian cancer cell lines showed relatively high levels of similarity to libraries from other cancer cell lines, regardless of the tissue of origin (ovarian or colon), indicating that these lines had lost many of their tissue-specific expression patterns. In contrast, immortalized ovarian surface epithelia and ovarian cystadenoma cells showed much higher similarity to primary ovarian carcinomas than to primary colon carcinomas. Primary tissue specimens therefore appeared to be a better model for gene expression analyses. Using the expression profiles described above and stringent selection criteria, we have identified a number of genes highly differentially expressed between nontransformed ovarian epithelia and ovarian carcinomas. Some of the genes identified are already known to be overexpressed in ovarian cancer, but several represent novel candidates. Many of the genes up-regulated in ovarian cancer represent surface or secreted proteins such as claudin-3 and -4, HE4, mucin-1, epithelial cellular adhesion molecule, and mesothelin. Interestingly, both apolipoprotein E (ApoE) and ApoJ, two proteins involved in lipid homeostasis, are among the genes highly up-regulated in ovarian cancer. Selected serial analysis of gene expression results were further validated through immunohistochemical analysis of ApoJ, claudin-3, claudin-4, and epithelial cellular adhesion molecule in archival material. These experiments provided additional evidence of the relevance of our findings in vivo. The publicly available expression data reported here should stimulate and aid further research in the field of ovarian cancer.

摘要

卵巢癌在检测、诊断和治疗方面存在困难,导致患这种疾病的女性总体生存率较低。更好地了解卵巢肿瘤发生所涉及的途径可能会为早期有效干预提供新的靶点。在此,我们利用基因表达系列分析(SAGE)从各种卵巢细胞系和组织中生成全局基因表达谱,包括原发性癌症、卵巢表面上皮细胞和囊腺瘤细胞。这些谱用于比较基因表达的总体模式并鉴定差异表达基因。我们总共对385,000个标签进行了测序,在来自卵巢组织的10个不同文库中产生了超过56,000个表达的基因。一般来说,卵巢癌细胞系与来自其他癌细胞系的文库显示出相对较高的相似性,无论其起源组织(卵巢或结肠)如何,这表明这些细胞系已经失去了许多组织特异性表达模式。相比之下,永生化卵巢表面上皮细胞和卵巢囊腺瘤细胞与原发性卵巢癌的相似性远高于原发性结肠癌。因此,原发性组织标本似乎是基因表达分析的更好模型。利用上述表达谱和严格的选择标准,我们鉴定了一些在未转化的卵巢上皮细胞和卵巢癌之间高度差异表达的基因。一些已鉴定的基因已知在卵巢癌中过表达,但有几个代表新的候选基因。在卵巢癌中上调的许多基因代表表面或分泌蛋白,如claudin-3和-4、HE4、粘蛋白-1、上皮细胞粘附分子和间皮素。有趣的是,参与脂质稳态的两种蛋白质载脂蛋白E(ApoE)和ApoJ均在卵巢癌中高度上调。通过对存档材料中的ApoJ、claudin-3、claudin-4和上皮细胞粘附分子进行免疫组织化学分析,进一步验证了所选的基因表达系列分析结果。这些实验为我们的发现在体内的相关性提供了额外证据。此处报告的公开可用表达数据应会刺激并有助于卵巢癌领域的进一步研究。

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