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热休克蛋白27(Hsp27)的上调在人结肠癌HT29细胞对光氧化应激的抗性中起作用。

Up-regulation of Hsp27 plays a role in the resistance of human colon carcinoma HT29 cells to photooxidative stress.

作者信息

Wang Hong P, Hanlon John G, Rainbow Andrew J, Espiritu Myrna, Singh Gurmit

机构信息

Hamilton Regional Cancer Centre, McMaster University, Ontario, Canada.

出版信息

Photochem Photobiol. 2002 Jul;76(1):98-104. doi: 10.1562/0031-8655(2002)076<0098:urohpa>2.0.co;2.

Abstract

The Photofrin-resistant cell line (HT29-P14) was used in the present study to investigate the mechanism(s) involved in Photofrin-mediated photodynamic therapy (PDT). We compared gene expression profiles between the resistant cell line and its parental cell line (HT29) using DNA microarray analysis. A significant up-regulation of small heat shock protein 27 (Hsp27) was found in HT29-P14 cells. The elevated Hsp27 level may play an important role in the resistance of HT29-P14 to Photofrin-PDT. To test this hypothesis, we stably transfected HT29 cells with human Hsp27 complementary DNA. The potential role of Hsp27 in the resistance to PDT was examined in Hsp27-overexpressing cells. Stable trasnfected cells (H13) showed an increased survival after Photofrin-PDT, suggesting that the up-regulation of Hsp27 is related to the induced resistance to Photofrin-PDT. Phosphorylation of Hsp27 has been suggested to play an important role in cytoprotection. We have examined the phosphorylation activity of Hsp27 among the parental and resistant cells, as well as the overexpression cells. An elevated level of Hsp27 resulted in an increased ability of phosphorylation in both resistant and overexpressing cells after PDT. The activation of the phosphorylation of Hsp27 induced by PDT was not mediated by the p38 mitogen-activated protein kinase. These data suggest that Hsp27 may play an important role in mediating the adaptive response to Photofrin-PDT-induced oxidative stress and that the pathways leading to Hsp27 phosphorylation may contribute to the resistance of the cells to photooxidative damage.

摘要

在本研究中,使用对卟吩姆钠耐药的细胞系(HT29-P14)来研究卟吩姆钠介导的光动力疗法(PDT)所涉及的机制。我们使用DNA微阵列分析比较了耐药细胞系与其亲本细胞系(HT29)之间的基因表达谱。在HT29-P14细胞中发现小热休克蛋白27(Hsp27)显著上调。Hsp27水平的升高可能在HT29-P14对卟吩姆钠-PDT的耐药性中起重要作用。为了验证这一假设,我们用人类Hsp27互补DNA稳定转染HT29细胞。在Hsp27过表达的细胞中检测了Hsp27在对PDT耐药性中的潜在作用。稳定转染的细胞(H13)在卟吩姆钠-PDT后显示出存活率增加,表明Hsp27的上调与对卟吩姆钠-PDT诱导的耐药性有关。有人提出Hsp27的磷酸化在细胞保护中起重要作用。我们检测了亲本细胞、耐药细胞以及过表达细胞中Hsp27的磷酸化活性。PDT后,耐药细胞和过表达细胞中Hsp27水平的升高均导致磷酸化能力增强。PDT诱导的Hsp27磷酸化激活不是由p38丝裂原活化蛋白激酶介导的。这些数据表明,Hsp27可能在介导对卟吩姆钠-PDT诱导的氧化应激的适应性反应中起重要作用,并且导致Hsp27磷酸化的途径可能有助于细胞对光氧化损伤的耐药性。

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