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苯并[a]芘二氢二醇环氧化物诱导的 DNA 合成抑制与 p(34)cdc2 的衰减有关:p53 的作用。

DNA synthesis inhibition in response to benzo[a]pyrene dihydrodiol epoxide is associated with attenuation of p(34)cdc2: Role of p53.

机构信息

State University of New York College, Buffalo, NY 14222, USA.

出版信息

Mutat Res. 2013 Jul 4;755(1):61-7. doi: 10.1016/j.mrgentox.2013.05.009. Epub 2013 May 18.

Abstract

Our previous findings demonstrated that DNA damage by polynuclear aromatic hydrocarbons (PAHs) triggers a cellular protective response of growth inhibition (G1-S cell cycle arrest and inhibition of DNA synthesis) in human fibroblasts associated with accumulation of p53 protein, a growth-inhibitory transcription factor. Here, we report that BPDE (the ultimate carcinogenic metabolite of the PAH benzo[a]pyrene) treatment triggers a variable extent of inhibition of DNA synthesis/cell growth, which does not correspond to the extent of increased p53 accumulation. BPDE treatment of cells significantly attenuates expression of p(34)cdc2, a cell cycle activating protein. Although the role of cdc2 down-regulation in inhibition of cell cycle progression is well known, cdc2 down-regulation in response to cellular insult by PAHs has not been reported. Unlike p53 accumulation, there is a correspondence between DNA synthesis/cell growth inhibition and cdc2 down-regulation by BPDE. BPDE-induced cdc2 down-regulation is p53 dependent, although there is no correspondence between p53 accumulation and cdc2 down-regulation. BPDE-induced cdc2 down-regulation corresponded with accumulation of the cell cycle inhibitor protein p21 (transactivation product of p53). DNA synthesis/cell growth inhibition in response to DNA-damaging PAHs may involve down-regulation of cdc2 protein mediated by p53 activation (transactivation ability), and the extent of p53 accumulation is not the sole determining factor in this regard.

摘要

我们先前的研究结果表明,多环芳烃(PAHs)造成的 DNA 损伤会引发人成纤维细胞的细胞保护反应,即生长抑制(G1-S 细胞周期阻滞和 DNA 合成抑制),同时伴有 p53 蛋白的积累,p53 蛋白是一种生长抑制转录因子。在这里,我们报告说,BPDE(PAH 苯并[a]芘的最终致癌代谢物)处理会引发不同程度的 DNA 合成/细胞生长抑制,这与 p53 积累的程度不对应。BPDE 处理细胞会显著减弱细胞周期激活蛋白 p(34)cdc2 的表达。虽然 cdc2 的下调在细胞周期进程的抑制中起着重要作用,但 PAHs 对细胞的损伤导致 cdc2 下调的作用尚未被报道。与 p53 积累不同,BPDE 引起的 DNA 合成/细胞生长抑制与 cdc2 的下调之间存在对应关系。BPDE 诱导的 cdc2 下调依赖于 p53,但 p53 积累与 cdc2 下调之间没有对应关系。BPDE 诱导的 cdc2 下调与细胞周期抑制剂蛋白 p21(p53 的转录激活产物)的积累相对应。对 DNA 损伤性 PAHs 的 DNA 合成/细胞生长抑制可能涉及由 p53 激活(转录激活能力)介导的 cdc2 蛋白下调,而且 p53 积累的程度并不是这方面的唯一决定因素。

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