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槲皮素诱导HT-29细胞中热休克基因表达抑制及耐热性发展延迟的机制。

Mechanism of quercetin-induced suppression and delay of heat shock gene expression and thermotolerance development in HT-29 cells.

作者信息

Lee Y J, Erdos G, Hou Z Z, Kim S H, Kim J H, Cho J M, Corry P M

机构信息

Department of Radiation Oncology, William Beaumont Hospital, Royal Oak, Michigan 48073.

出版信息

Mol Cell Biochem. 1994 Aug 31;137(2):141-54. doi: 10.1007/BF00944076.

Abstract

Previous studies have shown that a combination of low pH and quercetin (QCT) treatment following heat shock markedly suppresses and delays the expression of heat shock protein genes, particularly the HSP70 gene (Lee et al., Biochem. Biophys. Res. Commun., 186:1121-1128, 1992). The possible mechanism for alteration of gene expression by treatment with QCT at low pH was investigated in human colon carcinoma cells. Cells were heated at 45 degrees C for 15 min and then incubated at 37 degrees C for various times (0-12 h) with QCT (0.05-0.2 mM) at pH 7.4 or 6.5. Gel mobility-shift analysis of whole cell extracts from heated cells showed the formation of the heat shock transcription factor (HSF)-heat shock element (HSE) complex. Dissociation of HSF from the HSE of the human HSP70 promotor occurred within 4 h under both pH conditions. The kinetics of recovery were not affected by treatment with 0.1% dimethyl sulfoxide (DMSO). However, the dissociation of HSF-HSE complex was markedly delayed during treatment with a combination of low pH and QCT. In addition, in vitro transcription assays showed a suppression of initiation and elongation of HSP70 mRNA. These results may explain why the combination of low pH and QCT treatment suppresses and delays the HSP70 gene expression as well as thermotolerance development.

摘要

先前的研究表明,热休克后低pH值与槲皮素(QCT)联合处理可显著抑制并延迟热休克蛋白基因的表达,尤其是HSP70基因(Lee等人,《生物化学与生物物理研究通讯》,186:1121 - 1128,1992)。在人结肠癌细胞中研究了低pH值下用QCT处理改变基因表达的可能机制。细胞在45℃加热15分钟,然后在37℃用pH 7.4或6.5的QCT(0.05 - 0.2 mM)孵育不同时间(0 - 12小时)。对加热细胞的全细胞提取物进行凝胶迁移率变动分析,结果显示形成了热休克转录因子(HSF)-热休克元件(HSE)复合物。在两种pH条件下,HSF与人HSP70启动子的HSE解离均在4小时内发生。恢复动力学不受0.1%二甲基亚砜(DMSO)处理的影响。然而,在低pH值与QCT联合处理期间,HSF - HSE复合物的解离明显延迟。此外,体外转录分析显示HSP70 mRNA的起始和延伸受到抑制。这些结果可能解释了为什么低pH值与QCT联合处理会抑制并延迟HSP70基因表达以及热耐受性的发展。

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