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转化细胞中核定位依赖性核转运的全局增强。

Global enhancement of nuclear localization-dependent nuclear transport in transformed cells.

机构信息

Nuclear Signalling Laboratory, Department of Biochemistry and Molecular Biology, Monash University, Clayton, VIC 3800, Australia.

出版信息

FASEB J. 2012 Mar;26(3):1181-93. doi: 10.1096/fj.11-191585. Epub 2011 Dec 12.

Abstract

Fundamental to eukaryotic cell function, nucleocytoplasmic transport can be regulated at many levels, including through modulation of the importin/exportin (Imp/Exp) nuclear transport machinery itself. Although Imps/Exps are overexpressed in a number of transformed cell lines and patient tumor tissues, the efficiency of nucleocytoplasmic transport in transformed cell types compared with nontransformed cells has not been investigated. Here we use quantitative live cell imaging of 3 isogenic nontransformed/transformed cell pairs to show that nuclear accumulation of nuclear localization signal (NLS)-containing proteins, but not their NLS-mutated derivatives, is increased up to 7-fold in MCF10CA1h human epithelial breast carcinoma cells and in simian virus 40 (SV40)-transformed fibroblasts of human and monkey origin, compared with their nontransformed counterparts. The basis for this appears to be a significantly faster rate of nuclear import in transformed cell types, as revealed by analysis using fluorescence recovery after photobleaching for the human MCF10A/MCF10CA1h cell pair. Nuclear accumulation of NLS/nuclear export signal-containing (shuttling) proteins was also enhanced in transformed cell types, experiments using the nuclear export inhibitor leptomycin B demonstrating that efficient Exp-1-mediated nuclear export was not impaired in transformed compared with nontransformed cells. Enhanced nuclear import and export efficiencies were found to correlate with 2- to 4-fold higher expression of specific Imps/Exps in transformed cells, as indicated by quantitative Western blot analysis, with ectopic expression of Imps able to enhance NLS nuclear accumulation levels up to 5-fold in nontransformed MCF10A cells. The findings indicate that transformed cells possess altered nuclear transport properties, most likely due to the overexpression of Imps/Exps. The findings have important implications for the development of tumor-specific drug nanocarriers in anticancer therapy.

摘要

真核细胞功能的基础是核质转运,可以在多个水平上进行调节,包括通过调节输入蛋白/输出蛋白(Imp/Exp)核转运机制本身。尽管 Imp/Exps 在许多转化细胞系和患者肿瘤组织中过表达,但与非转化细胞相比,转化细胞类型中的核质转运效率尚未得到研究。在这里,我们使用 3 对同基因非转化/转化细胞对的定量活细胞成像,显示含有核定位信号(NLS)的蛋白质的核积累,而不是它们的 NLS 突变衍生物,在 MCF10CA1h 人上皮乳腺癌细胞和猴源性 SV40(SV40)转化成纤维细胞中,与它们的非转化对应物相比,增加了高达 7 倍。这似乎是由于转化细胞类型中核输入的速度明显加快,这是通过对人 MCF10A/MCF10CA1h 细胞对进行荧光恢复后光漂白分析得出的。NLS/核输出信号(穿梭)蛋白的核积累也在转化细胞类型中得到增强,使用核输出抑制剂莱普霉素 B 的实验表明,与非转化细胞相比,有效 Exp-1 介导的核输出在转化细胞中并未受损。增强的核输入和输出效率与转化细胞中特定 Imp/Exp 的表达水平提高 2-4 倍相关,这是通过定量 Western blot 分析表明的,异位表达 Imp 能够将非转化 MCF10A 细胞中的 NLS 核积累水平提高高达 5 倍。研究结果表明,转化细胞具有改变的核转运特性,这很可能是由于 Imp/Exp 的过表达。这些发现对开发用于癌症治疗的肿瘤特异性药物纳米载体具有重要意义。

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