Gahlon Hailey L, Boby Melissa L, Sturla Shana J
Department of Health Sciences and Technology, Institute of Food Nutrition and Health, ETH Zürich , Schmelzbergstrasse 9, 8092 Zürich, Switzerland.
ACS Chem Biol. 2014 Dec 19;9(12):2807-14. doi: 10.1021/cb500415q. Epub 2014 Oct 16.
The ability of a DNA polymerase to replicate DNA beyond a mismatch containing a DNA lesion during postlesion DNA synthesis (PLS) can be a contributing factor to mutagenesis. In this study, we investigate the ability of Dpo4, a Y-family DNA polymerase from Sulfolobus solfataricus, to perform PLS beyond the pro-mutagenic DNA adducts O(6)-benzylguanine (O(6)-BnG) and O(6)-methylguanine (O(6)-MeG). Here, O(6)-BnG and O(6)-MeG were paired opposite artificial nucleosides that were structurally altered to systematically test the influence of hydrogen bonding and base pair size and shape on O(6)-alkylguanine PLS. Dpo4-mediated PLS was more efficient past pairs containing Benzi than pairs containing the other artificial nucleoside probes. Based on steady-state kinetic analysis, frequencies of mismatch extension were 7.4 × 10(-3) and 1.5 × 10(-3) for Benzi:O(6)-MeG and Benzi:O(6)-BnG pairs, respectively. Correct extension was observed when O(6)-BnG and O(6)-MeG were paired opposite the smaller nucleoside probes Benzi and BIM; conversely, Dpo4 did not extend past the larger nucleoside probes, Peri and Per, placed opposite O(6)-BnG and O(6)-MeG. Interestingly, Benzi was extended with high fidelity by Dpo4 when it was paired opposite O(6)-BnG and O(6)-MeG but not opposite G. These results indicate that hydrogen bonding is an important noncovalent interaction that influences the fidelity and efficiency of Dpo4 to perform high-fidelity O(6)-alkylguanine PLS.
在损伤后DNA合成(PLS)过程中,DNA聚合酶在含有DNA损伤的错配位点之外复制DNA的能力可能是诱变的一个促成因素。在本研究中,我们研究了来自嗜热栖热菌的Y家族DNA聚合酶Dpo4在诱变前DNA加合物O(6)-苄基鸟嘌呤(O(6)-BnG)和O(6)-甲基鸟嘌呤(O(6)-MeG)之外进行PLS的能力。在这里,O(6)-BnG和O(6)-MeG与经过结构改变的人工核苷配对,以系统地测试氢键以及碱基对大小和形状对O(6)-烷基鸟嘌呤PLS的影响。与含有其他人工核苷探针的配对相比,Dpo4介导的PLS在含有苯并咪唑的配对上更有效。基于稳态动力学分析,苯并咪唑:O(6)-MeG和苯并咪唑:O(6)-BnG配对的错配延伸频率分别为7.4×10⁻³和1.5×10⁻³。当O(6)-BnG和O(6)-MeG与较小的核苷探针苯并咪唑和BIM配对时,观察到正确延伸;相反,Dpo4没有延伸超过与O(6)-BnG和O(6)-MeG配对的较大核苷探针芘和戊炔。有趣的是,当苯并咪唑与O(6)-BnG和O(6)-MeG配对而非与鸟嘌呤配对时,Dpo4能以高保真度延伸苯并咪唑。这些结果表明,氢键是一种重要的非共价相互作用,影响Dpo4进行高保真O(6)-烷基鸟嘌呤PLS的保真度和效率。