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一种新型BRCA1基因缺失的卵巢癌细胞系对电离辐射反应的功能特性研究

Functional characterization of a novel BRCA1-null ovarian cancer cell line in response to ionizing radiation.

作者信息

DelloRusso Christiana, Welcsh Piri L, Wang Weixin, Garcia Rochelle L, King Mary-Claire, Swisher Elizabeth M

机构信息

Department of Medicine, Division of Medical Genetics, University of Washington School of Medicine, Seattle, WA 98195-7720, USA.

出版信息

Mol Cancer Res. 2007 Jan;5(1):35-45. doi: 10.1158/1541-7786.MCR-06-0234.

Abstract

The breast and ovarian cancer susceptibility gene BRCA1 plays a major role in the DNA damage response pathway. The lack of well-characterized human BRCA1-null cell lines has limited the investigation of BRCA1 function, particularly with regard to its role in ovarian cancer. We propagated a novel BRCA1-null human ovarian cancer cell line UWB1.289 from a tumor of papillary serous histology, the most common form of ovarian carcinoma. UWB1.289 carries a germline BRCA1 mutation within exon 11 and has a deletion of the wild-type allele. UWB1.289 is estrogen and progesterone receptor negative and has an acquired somatic mutation in p53, similar to the commonly used BRCA1-null breast cancer cell line HCC1937. We used ionizing radiation to induce DNA damage in both UWB1.289 and in a stable UWB1.289 line in which wild-type BRCA1 was restored. We examined several responses to DNA damage in these cell lines, including sensitivity to radiation, cell cycle checkpoint function, and changes in gene expression using microarray analysis. We observed that UWB1.289 is sensitive to ionizing radiation and lacks cell cycle checkpoint functions that are a normal part of the DNA damage response. Restoration of wild-type BRCA1 function in these cells partially restores DNA damage responses. Expression array analysis not only supports this partial functional correction but also reveals interesting new information regarding BRCA1-positive regulation of the expression of claudin 6 and other metastasis-associated genes and negative regulation of multiple IFN-inducible genes.

摘要

乳腺癌和卵巢癌易感基因BRCA1在DNA损伤反应途径中起主要作用。缺乏特征明确的人BRCA1基因敲除细胞系限制了对BRCA1功能的研究,特别是其在卵巢癌中的作用。我们从乳头状浆液性组织学肿瘤(卵巢癌最常见的形式)中培育出一种新型的人BRCA1基因敲除卵巢癌细胞系UWB1.289。UWB1.289在第11外显子内携带种系BRCA1突变,且野生型等位基因缺失。UWB1.289雌激素和孕激素受体均为阴性,且p53存在获得性体细胞突变,这与常用的BRCA1基因敲除乳腺癌细胞系HCC1937相似。我们使用电离辐射在UWB1.289及其野生型BRCA1得以恢复的稳定细胞系中诱导DNA损伤。我们检测了这些细胞系对DNA损伤的几种反应,包括对辐射的敏感性、细胞周期检查点功能以及使用微阵列分析检测基因表达的变化。我们观察到UWB1.289对电离辐射敏感,且缺乏作为DNA损伤反应正常组成部分的细胞周期检查点功能。在这些细胞中恢复野生型BRCA1功能可部分恢复DNA损伤反应。表达阵列分析不仅支持这种部分功能校正,还揭示了有关BRCA1对claudin 6和其他转移相关基因表达的正向调控以及对多个干扰素诱导基因的负向调控的有趣新信息。

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