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三氧化二砷作用于人白血病细胞(HL-60)后对 p53、c-fos、RARE、细胞周期蛋白 A 和 D1 表达的调节。

Modulation of p53, c-fos, RARE, cyclin A, and cyclin D1 expression in human leukemia (HL-60) cells exposed to arsenic trioxide.

机构信息

Cellomics and Toxicogenomics Research Laboratory, NIH-RCMI Center for Environmental Health, College of Science, Engineering and Technology, Jackson State University, 1400 Lynch Street, Box 18540, Jackson, MS, USA.

出版信息

Mol Cell Biochem. 2009 Nov;331(1-2):207-14. doi: 10.1007/s11010-009-0160-z. Epub 2009 May 15.

Abstract

Arsenic trioxide (As(2)O(3)) has recently been successfully used to treat all trans retinoic acid (ATRA) resistant relapsing acute promyelocytic leukemia. However, its molecular mechanisms of action are poorly understood. In the present study, we used the human leukemia (HL-60) cell line as a test model to study the cellular and molecular mechanisms of anti-cancer properties of As(2)O(3). We hypothesized that As(2)O(3)-induced expression of stress genes and related proteins may play a role in the cellular and molecular events leading to cell cycle modulation in leukemic cells. To test this hypothesis, we performed Western blot analysis to assess the expression of specific cellular response proteins including p53, c-fos, RARE, Cyclin A, and Cyclin D1. Densitometric analysis was performed to determine the relative abundance of these proteins. Western Blot and densitometric analyses demonstrated a strong dose-response relationship with regard to p53 and RARE expression within the dose-range of 0-8 microg/ml. Expression of c-fos was slightly up-regulated at 2 microg/ml, and down-regulated within the dose-range of 4-8 microg/ml. A statistically significant down-regulation of this protein was detected at the 6 and 8 microg/ml dose levels. No statistically significant differences (p > 0.05) in Cyclin D1 expression was found between As(2)O(3)-treated cells and the control. Cyclin A expression in As(2)O(3)-treated HL-60 cells was up-regulated at 6 microg/ml, suggesting that it is required for S phase and passage through G(2) phase in cell cycle progression. Taken together, these results indicate that As(2)O(3) has the potential to induce cell cycle arrest through activation of the 53-kDa tumor suppressor protein and repression of the c-fos transcription factor. Up-regulation of RARE by As(2)O(3) indicates that its cytotoxicity may be mediated through interaction/binding with the retinoic acid receptor, and subsequent inhibition of growth and differentiation.

摘要

三氧化二砷(As2O3)最近已成功用于治疗全反式维甲酸(ATRA)耐药的复发性急性早幼粒细胞白血病。然而,其作用机制尚不清楚。本研究采用人白血病(HL-60)细胞系作为实验模型,研究As2O3的抗癌特性的细胞和分子机制。我们假设As2O3诱导的应激基因和相关蛋白的表达可能在导致白血病细胞周期调节的细胞和分子事件中发挥作用。为了验证这一假说,我们进行了 Western blot 分析,以评估包括 p53、c-fos、RARE、Cyclin A 和 Cyclin D1 在内的特定细胞反应蛋白的表达。通过密度测定分析来确定这些蛋白的相对丰度。Western blot 和密度测定分析表明,p53 和 RARE 的表达在 0-8μg/ml 的剂量范围内存在强烈的剂量反应关系。c-fos 的表达在 2μg/ml 时略有上调,在 4-8μg/ml 的剂量范围内下调。在 6 和 8μg/ml 的剂量水平下,该蛋白的表达明显下调。As2O3 处理的细胞与对照细胞之间,Cyclin D1 的表达无统计学显著差异(p>0.05)。As2O3 处理的 HL-60 细胞中的 Cyclin A 表达上调至 6μg/ml,表明其在细胞周期进展的 S 期和 G2 期通过是必需的。总之,这些结果表明,As2O3 通过激活 53kDa 肿瘤抑制蛋白和抑制 c-fos 转录因子,有可能诱导细胞周期停滞。As2O3 对 RARE 的上调表明,其细胞毒性可能通过与维甲酸受体的相互作用/结合介导,随后抑制生长和分化。

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