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簇集素在人类卵巢癌进展、化疗耐药及转移中的作用

Roles of clusterin in progression, chemoresistance and metastasis of human ovarian cancer.

作者信息

Wei Li, Xue Tao, Wang Jian, Chen Biliang, Lei Yingfeng, Huang Yanhong, Wang Hongying, Xin Xiaoyan

机构信息

Department of Obstetrics and Gynecology, Xijing Hospital, the Fourth Military Medical University, People's Republic of China.

出版信息

Int J Cancer. 2009 Aug 15;125(4):791-806. doi: 10.1002/ijc.24316.

Abstract

Clusterin (CLU) is a multivalent glycoprotein with ubiquitous tissue distribution. To address the possible differential functional roles assumed by different isoforms of CLU in the progression of human ovarian cancer, we constructed 2 human ovarian cancer cell models that represent examples of contradistinctive CLU expression levels. One is constitutively overexpressing different clusterin isoforms in SKOV3 cells by transfection of the 3 different expression vectors, another is silencing the intrinsically expressing clusterin in cisplatin-resistant human A2780-cis(CP70) tumor cells with the usage of shRNA-mediated CLU gene silencing. Then, the different cellular localization, biological effects, and functional roles played in tumor progression and drug resistances were studied. We found that (i) in the distinct cellular contexts of human ovarian carcinoma SKOV3 and CP70 cells assayed, sCLU is a central molecule in cell homeostasis that functions as a cytoprotective protein, whereas nCLU is proapoptotic; (ii) In SKOV3 cells, nuclear localization of the truncated CLU is NLS dependent, without which the pnCLU protein was sequestrated in cytoplasm to prevent cytotoxicity. (iii) sCLU plays a significant role in the development of the chemoresistance phenotype in ovarian cancer cells. Moreover, with the CLU-specific shRNA oligonucleotides, we successfully sensitized cells for chemotherapy, and inhibited cells' proliferation, migration and invasion. Collectively, our results reveal that, CLU gene expression might play a crucial role in ovarian cancer progression, adaptation and eventual resistance to chemotherapy through differential processing of CLU isoforms. Specifically, sCLU as an antiapoptotic protein, upregulated in an adaptive cell-survival manner by chemotherapy, confers resistance to various cell-death triggers.

摘要

簇集素(CLU)是一种多价糖蛋白,在组织中广泛分布。为了探讨CLU不同亚型在人类卵巢癌进展中可能发挥的不同功能作用,我们构建了2种人类卵巢癌细胞模型,分别代表CLU表达水平截然不同的例子。一种是通过转染3种不同的表达载体,在SKOV3细胞中组成性过表达不同的簇集素亚型;另一种是利用shRNA介导的CLU基因沉默,使顺铂耐药的人A2780-cis(CP70)肿瘤细胞中内源性表达的簇集素沉默。然后,研究了它们在肿瘤进展和耐药性中不同的细胞定位、生物学效应和功能作用。我们发现:(i)在检测的人类卵巢癌SKOV3和CP70细胞的不同细胞环境中,分泌型簇集素(sCLU)是细胞稳态的核心分子,作为一种细胞保护蛋白发挥作用,而核型簇集素(nCLU)具有促凋亡作用;(ii)在SKOV3细胞中,截短型CLU的核定位依赖于核定位信号(NLS),没有NLS,截短型核簇集素(pnCLU)蛋白会被隔离在细胞质中以防止细胞毒性;(iii)sCLU在卵巢癌细胞化疗耐药表型的形成中起重要作用。此外,使用针对CLU的shRNA寡核苷酸,我们成功地使细胞对化疗敏感,并抑制了细胞的增殖、迁移和侵袭。总的来说,我们的结果表明,CLU基因表达可能通过对CLU亚型的不同加工,在卵巢癌进展、适应及最终对化疗耐药中起关键作用。具体而言,sCLU作为一种抗凋亡蛋白,通过化疗以适应性细胞存活的方式上调,赋予细胞对各种细胞死亡触发因素的抗性。

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