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铬酸钙在同步和异步培养的哺乳动物细胞中诱导的DNA损伤的表征

Characterization of DNA lesions induced by CaCrO4 in synchronous and asynchronous cultured mammalian cells.

作者信息

Sugiyama M, Patierno S R, Cantoni O, Costa M

出版信息

Mol Pharmacol. 1986 Jun;29(6):606-13.

PMID:3713704
Abstract

Alkaline elution studies demonstrated CaCrO4-induced DNA single strand breaks and DNA-protein crosslinks. DNA single strand breaks increased following treatment with 10-400 microM CaCrO4 in Chinese hamster ovary cells maintained with a minimal salts/glucose medium. DNA single strand breaks were rapidly repaired when extracellular CaCrO4 was removed even following exposure levels of CaCrO4 (200 microM for 2 hr) which reduced survival to 0.6%. Under these exposure conditions the trypan blue exclusion was greater than 80%, whereas cell growth was inhibited by 46% within 24 hr. The DNA-protein crosslinks induced by 10 microM CaCrO4 were repaired in the absence of metal within 24 hr. In contrast, the amount of DNA-protein crosslinks measured 24 hr after a 2-hr treatment with 50, 100, and 200 microM CaCrO4 remained unchanged at the 50 microM level or increased at the two higher concentrations. Thus, at concentrations of 50 microM or greater there was no repair of the DNA protein crosslinks, and this may have been due to cytotoxicity of the metal. CaCrO4 at 10 or 25 microM exposure for 6 hr also induced DNA-protein crosslinking in Chinese hamster ovary cells maintained in normal tissue culture growth media. The lack of repair of DNA-protein crosslinks at the 25 microM level, which did not substantially reduce cell survival, indicated the persistence of these lesions in a noncytotoxic form. Uptake of CaCrO4 was linear with all of the concentrations tested. Analysis of the cell cycle sensitivity to CaCrO4 revealed that cells in early S phase were the most sensitive to the cytotoxic and strand breaking activity of CaCrO4. Compared with other phases of the cell cycle, there was also an elevated level of DNA-protein crosslinks when cells were treated in early S phase and incubated 24 hr without CaCrO4. These results implicate the DNA-protein crosslink as an important lesion that may be responsible for the cytotoxic and carcinogenic properties of chromate.

摘要

碱性洗脱研究表明,铬酸钙可诱导DNA单链断裂和DNA-蛋白质交联。在中国仓鼠卵巢细胞中,用10 - 400微摩尔铬酸钙处理后,DNA单链断裂增加,这些细胞在最低盐/葡萄糖培养基中培养。即使在铬酸钙暴露水平(200微摩尔,2小时)导致细胞存活率降至0.6%之后,去除细胞外铬酸钙时,DNA单链断裂也能迅速修复。在这些暴露条件下,台盼蓝拒染率大于80%,而细胞生长在24小时内受到46%的抑制。10微摩尔铬酸钙诱导的DNA-蛋白质交联在无金属的情况下24小时内得到修复。相比之下,用50、100和200微摩尔铬酸钙处理2小时后24小时测量的DNA-蛋白质交联量在50微摩尔水平保持不变,在两个较高浓度下增加。因此,在50微摩尔或更高浓度下,DNA-蛋白质交联没有修复,这可能是由于金属的细胞毒性。在正常组织培养生长培养基中培养的中国仓鼠卵巢细胞,用10或25微摩尔铬酸钙暴露6小时也会诱导DNA-蛋白质交联。25微摩尔水平的DNA-蛋白质交联缺乏修复,且并未显著降低细胞存活率,这表明这些损伤以无细胞毒性的形式持续存在。铬酸钙的摄取与所有测试浓度呈线性关系。对细胞周期对铬酸钙敏感性的分析表明,S期早期的细胞对铬酸钙的细胞毒性和链断裂活性最敏感。与细胞周期的其他阶段相比,当细胞在S期早期处理并在无铬酸钙的情况下孵育24小时时,DNA-蛋白质交联水平也会升高。这些结果表明,DNA-蛋白质交联是一种重要的损伤,可能是铬酸盐细胞毒性和致癌特性的原因。

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