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与人类卵巢腺癌细胞系 A2780 顺铂耐药相关的差异表达基因。

Differentially expressed genes associated with cisplatin resistance in human ovarian adenocarcinoma cell line A2780.

机构信息

Laboratory for Cell Biology, Institute of Biology & Ecology, P.J. Šafárik University, Košice, Slovak Republic.

出版信息

Cancer Lett. 2011 Oct 1;309(1):11-8. doi: 10.1016/j.canlet.2011.05.008. Epub 2011 Jun 14.

DOI:10.1016/j.canlet.2011.05.008
PMID:21676537
Abstract

Ovarian cancer cells are usually initially sensitive to platinum-based chemotherapy, such as cisplatin (CDDP), but typically become resistant over time. Such drug resistance is a serious impediment to successful disease treatment, and the molecular mechanisms responsible for resistance are not fully understood. In search of novel mechanisms that may lead to the development of CDDP chemoresistance, we used subtractive hybridization to identify differentially expressed genes in CDDP resistant CP70 and C200 cells vs. CDDP sensitive A2780 human ovarian adenocarcinoma cells. We analyzed 256 randomly selected clones. Subtraction efficiency was determined by dot blot and DNA sequencing. Confirmation of differentially expressed cDNAs was done by virtual northern blot analysis, and 17 genes that were differentially expressed in CDDP resistant cell lines vs. CDDP sensitive A2780 cells were identified. The expression of 10 of these genes was low or undetectable in sensitive A2780 cells in comparison to resistant cells and an additional seven genes were more highly expressed in resistant CP70 and C200 vs. A2780 cells. Our identified genes are involved in numerous and diverse cellular processes, such as inhibition of apoptosis (ARHGDIB), stress response (HSPCA, TRA1), chromatin condensation (CNAP1, RanBP2), invasiveness of cells (MMP10), alteration of Ca(2+) homeostasis (ASPH, ATP2B1) and others. Further characterization of these genes and gene products should yield important insights into the biology of CDDP resistance in ovarian carcinoma.

摘要

卵巢癌细胞通常最初对铂类化疗药物如顺铂(CDDP)敏感,但随着时间的推移通常会产生耐药性。这种药物耐药性是成功治疗疾病的严重障碍,其耐药的分子机制尚未完全阐明。为了寻找可能导致 CDDP 耐药的新机制,我们使用消减杂交技术鉴定了 CDDP 耐药 CP70 和 C200 细胞与 CDDP 敏感 A2780 人卵巢腺癌细胞之间差异表达的基因。我们分析了 256 个随机选择的克隆。通过点印迹和 DNA 测序确定消减效率。通过虚拟 northern blot 分析确认差异表达的 cDNA,并鉴定了在 CDDP 耐药细胞系与 CDDP 敏感 A2780 细胞中差异表达的 17 个基因。与耐药细胞相比,这些基因中有 10 个在敏感 A2780 细胞中的表达较低或无法检测到,另外 7 个基因在耐药 CP70 和 C200 细胞中比 A2780 细胞中表达更高。我们鉴定的基因涉及许多不同的细胞过程,如抑制细胞凋亡(ARHGDIB)、应激反应(HSPCA、TRA1)、染色质浓缩(CNAP1、RanBP2)、细胞侵袭(MMP10)、改变 Ca(2+)稳态(ASPH、ATP2B1)等。进一步对这些基因和基因产物进行特征分析,应该可以深入了解卵巢癌中 CDDP 耐药的生物学特性。

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