Yang Jin, Chen Zhiwen, Liu Yang, Hickey Robert J, Malkas Linda H
Department of Medicine, Division of Hematology/Oncology, Cancer Research Institute, Indiana University of School of Medicine, Indianapolis, Indiana 46202, USA.
Cancer Res. 2004 Aug 15;64(16):5597-607. doi: 10.1158/0008-5472.CAN-04-0603.
The recently discovered human enzyme DNA polymerase iota (pol iota) has been shown to have an exceptionally high error rate on artificial DNA templates. Although there is a considerable body of in vitro evidence for a role for pol iota in DNA lesion bypass, there is no in vivo evidence to confirm this action. We report here that pol iota expression is elevated in breast cancer cells and correlates with a significant decrease in DNA replication fidelity. We also demonstrate that UV treatment of breast cancer cells additionally increases pol iota expression with a peak occurring between 30 min and 2 h after cellular insult. This implies that the change in pol iota expression is an early event after UV-mediated DNA damage. That pol iota may play a role in the higher mutation frequencies observed in breast cancer cells was suggested when a reduction in mutation frequency was found after pol iota was immunodepleted from nuclear extracts of the cells. Analysis of the UV-induced mutation spectra revealed that > 90% were point mutations. The analysis also demonstrated a decreased C --> T nucleotide transition and an increased C --> A transversion rate. Overall, our data strongly suggest that pol iota may be involved in the generation of both increased spontaneous and translesion mutations during DNA replication in breast cancer cells, thereby contributing to the accumulation of genetic damage.
最近发现的人类酶DNA聚合酶ι(pol ι)已被证明在人工DNA模板上具有极高的错误率。尽管有大量体外证据表明pol ι在DNA损伤绕过中发挥作用,但尚无体内证据证实这一作用。我们在此报告,pol ι在乳腺癌细胞中的表达升高,且与DNA复制保真度的显著降低相关。我们还证明,对乳腺癌细胞进行紫外线处理会进一步增加pol ι的表达,在细胞受到损伤后30分钟至2小时之间出现峰值。这意味着pol ι表达的变化是紫外线介导的DNA损伤后的早期事件。当从细胞的核提取物中免疫去除pol ι后发现突变频率降低时,提示pol ι可能在乳腺癌细胞中观察到的较高突变频率中起作用。对紫外线诱导的突变谱分析显示,超过90%为点突变。分析还表明C→T核苷酸转换减少,C→A颠换率增加。总体而言,我们的数据强烈表明,pol ι可能参与乳腺癌细胞DNA复制过程中自发突变和跨损伤突变的增加,从而导致遗传损伤的积累。