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暴露于钒酸盐的A549肺上皮细胞中p53丝氨酸15位点的磷酸化:ATM途径的参与

Phosphorylation of p53 at serine 15 in A549 pulmonary epithelial cells exposed to vanadate: involvement of ATM pathway.

作者信息

Suzuki Katsura, Inageda Kiyoshi, Nishitai Gen, Matsuoka Masato

机构信息

Department of Hygiene and Public Health I, Tokyo Women's Medical University, 8-1 Kawada-cho, Shinjuku-ku, Tokyo 162-8666, Japan.

出版信息

Toxicol Appl Pharmacol. 2007 Apr 1;220(1):83-91. doi: 10.1016/j.taap.2006.12.028. Epub 2007 Jan 8.

Abstract

When A549 cells were exposed to sodium metavanadate (NaVO(3)), the pentavalent species of vanadium (vanadate), phosphorylation of p53 protein at Ser15 was found in a time (8-48 h)- and dose (10-200 microM)-dependent manner. After the incubation with 50 or 100 microM NaVO(3) for 48 h, accumulation of p53 protein was accompanied with Ser15 phosphorylation. Among serines in p53 protein immunoprecipitated from A549 cells treated with 100 microM NaVO(3) for 48 h, only Ser15 was markedly phosphorylated. Treatment with other vanadate compounds, sodium orthovanadate (Na(3)VO(4)) and ammonium metavanadate (NH(4)VO(3)), also induced Ser15 phosphorylation and accumulation of p53 protein. While phosphorylation of extracellular signal-regulated protein kinase (ERK) was found in cells treated with NaVO(3), treatment with U0126 did not suppress Ser15 phosphorylation. On the other hand, treatment with wortmannin or caffeine, the inhibitors to phosphatidylinositol 3-kinase related kinases (PIKKs), suppressed both NaVO(3)-induced Ser15 phosphorylation and accumulation of p53 protein. The silencing of ataxia telangiectasia mutated (ATM) expression using short-interference RNA resulted in the marked suppression of Ser15 phosphorylation in A549 cells exposed to NaVO(3). However, treatment with antioxidants such as catalase and N-acetylcysteine did not suppress NaVO(3)-induced Ser15 phosphorylation. Transcriptional activation of p53 and DNA fragmentation in A549 cells treated with NaVO(3) were suppressed only slightly by S15A mutation, suggesting that Ser15 phosphorylation is not essential for these responses. The present results showed that vanadate induces the phosphorylation of p53 at Ser15 depending on ATM, one of the members of PIKK family, in this human pulmonary epithelial cell line.

摘要

当A549细胞暴露于偏钒酸钠(NaVO₃)时,发现钒的五价形式(钒酸盐)能以时间(8 - 48小时)和剂量(10 - 200微摩尔)依赖的方式使p53蛋白在Ser15位点发生磷酸化。在用50或100微摩尔NaVO₃孵育48小时后,p53蛋白的积累伴随着Ser15的磷酸化。在用100微摩尔NaVO₃处理48小时的A549细胞中免疫沉淀的p53蛋白的丝氨酸中,只有Ser15被显著磷酸化。用其他钒酸盐化合物正钒酸钠(Na₃VO₄)和偏钒酸铵(NH₄VO₃)处理,也能诱导Ser15磷酸化和p53蛋白的积累。虽然在用NaVO₃处理的细胞中发现细胞外信号调节蛋白激酶(ERK)发生了磷酸化,但用U0126处理并不能抑制Ser15的磷酸化。另一方面,用渥曼青霉素或咖啡因(磷脂酰肌醇3激酶相关激酶(PIKKs)的抑制剂)处理,可抑制NaVO₃诱导的Ser15磷酸化和p53蛋白的积累。使用短干扰RNA使共济失调毛细血管扩张症突变(ATM)表达沉默,导致暴露于NaVO₃的A549细胞中Ser15磷酸化显著受到抑制。然而,用过氧化氢酶和N - 乙酰半胱氨酸等抗氧化剂处理并不能抑制NaVO₃诱导的Ser15磷酸化。在A549细胞中,用NaVO₃处理后,p53的转录激活和DNA片段化仅被S15A突变轻微抑制,这表明Ser15磷酸化对于这些反应并非必不可少。目前的结果表明,在这个人肺上皮细胞系中,钒酸盐依赖于PIKK家族成员之一的ATM诱导p53在Ser15位点的磷酸化。

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