Department of Biochemistry and Molecular Biology, University of Louisville, Louisville, Kentucky, United States of America.
PLoS One. 2012;7(6):e39596. doi: 10.1371/journal.pone.0039596. Epub 2012 Jun 20.
Y-family DNA-polymerases have larger active sites that can accommodate bulky DNA adducts allowing them to bypass these lesions during replication. One member, polymerase eta (pol eta), is specialized for the bypass of UV-induced thymidine-thymidine dimers, correctly inserting two adenines. Loss of pol eta function is the molecular basis for xeroderma pigmentosum (XP) variant where the accumulation of mutations results in a dramatic increase in UV-induced skin cancers. Less is known about the role of pol eta in the bypass of other DNA adducts. A commonly encountered DNA adduct is that caused by benzo[a]pyrene diol epoxide (BPDE), the ultimate carcinogenic metabolite of the environmental chemical benzo[a]pyrene. Here, treatment of pol eta-deficient fibroblasts from humans and mice with BPDE resulted in a significant decrease in Hprt gene mutations. These studies in mammalian cells support a number of in vitro reports that purified pol eta has error-prone activity on plasmids with site-directed BPDE adducts. Sequencing the Hprt gene from this work shows that the majority of mutations are G>T transversions. These data suggest that pol eta has error-prone activity when bypassing BPDE-adducts. Understanding the basis of environmental carcinogen-derived mutations may enable prevention strategies to reduce such mutations with the intent to reduce the number of environmentally relevant cancers.
Y 家族 DNA 聚合酶具有更大的活性位点,可以容纳体积较大的 DNA 加合物,从而使其能够在复制过程中绕过这些损伤。其中一个成员,聚合酶 eta(pol eta),专门用于绕过 UV 诱导的胸腺嘧啶-胸腺嘧啶二聚体,正确地插入两个腺嘌呤。pol eta 功能的丧失是 Xeroderma pigmentosum(XP)变体的分子基础,其中突变的积累导致 UV 诱导的皮肤癌急剧增加。关于 pol eta 在绕过其他 DNA 加合物方面的作用知之甚少。一种常见的 DNA 加合物是苯并[a]芘二醇环氧化物(BPDE)引起的,BPDE 是环境化学物质苯并[a]芘的最终致癌代谢物。在这里,用 BPDE 处理来自人和小鼠的 pol eta 缺陷成纤维细胞导致 Hprt 基因突变显著减少。这些在哺乳动物细胞中的研究支持了许多体外报告,即纯化的 pol eta 在带有定向 BPDE 加合物的质粒上具有易错活性。对这项工作中的 Hprt 基因进行测序表明,大多数突变是 G>T 颠换。这些数据表明,pol eta 在绕过 BPDE 加合物时具有易错活性。了解环境致癌衍生突变的基础可能能够制定预防策略来减少此类突变,目的是减少与环境相关的癌症数量。