Ifremer, Univ Brest, CNRS, Laboratoire de Microbiologie des Environnements Extrêmes, F-29280 Plouzané, France.
Department of Medical Biochemistry and Biophysics, Umeå University, Umeå, Sweden.
J Mol Biol. 2018 Dec 7;430(24):4908-4924. doi: 10.1016/j.jmb.2018.10.004. Epub 2018 Oct 31.
Consistent with the fact that ribonucleotides (rNTPs) are in excess over deoxyribonucleotides (dNTPs) in vivo, recent findings indicate that replicative DNA polymerases (DNA Pols) are able to insert ribonucleotides (rNMPs) during DNA synthesis, raising crucial questions about the fidelity of DNA replication in both Bacteria and Eukarya. Here, we report that the level of rNTPs is 20-fold higher than that of dNTPs in Pyrococcus abyssi cells. Using dNTP and rNTP concentrations present in vivo, we recorded rNMP incorporation in a template-specific manner during in vitro synthesis, with the family-D DNA Pol (PolD) having the highest propensity compared with the family-B DNA Pol and the p41/p46 complex. We also showed that ribonucleotides accumulate at a relatively high frequency in the genome of wild-type Thermococcales cells, and this frequency significantly increases upon deletion of RNase HII, the major enzyme responsible for the removal of RNA from DNA. Because ribonucleotides remain in genomic DNA, we then analyzed the effects on polymerization activities by the three DNA Pols. Depending on the identity of the base and the sequence context, all three DNA Pols bypass rNMP-containing DNA templates with variable efficiency and nucleotide (mis)incorporation ability. Unexpectedly, we found that PolD correctly base-paired a single ribonucleotide opposite rNMP-containing DNA templates. An evolutionary scenario is discussed concerning rNMP incorporation into DNA and genome stability.
与体内核糖核苷酸(rNTPs)超过脱氧核糖核苷酸(dNTPs)的事实一致,最近的研究结果表明,复制 DNA 聚合酶(DNA Pols)能够在 DNA 合成过程中插入核糖核苷酸(rNMPs),这引发了关于细菌和真核生物中 DNA 复制保真度的关键问题。在这里,我们报告 Pyrococcus abyssi 细胞中的 rNTP 水平比 dNTP 高 20 倍。利用体内存在的 dNTP 和 rNTP 浓度,我们记录了在体外合成中以模板特异性方式掺入 rNMP 的情况,与家族 B DNA Pol 和 p41/p46 复合物相比,家族 D DNA Pol(PolD)具有最高的倾向。我们还表明,核糖核苷酸在野生型 Thermococcales 细胞的基因组中以相对较高的频率积累,并且在删除负责从 DNA 中去除 RNA 的主要酶 RNase HII 后,这种频率会显著增加。由于核糖核苷酸仍然存在于基因组 DNA 中,因此我们随后分析了三种 DNA Pol 对聚合活性的影响。根据碱基的身份和序列上下文,三种 DNA Pol 都以不同的效率和核苷酸(错误)掺入能力绕过含有 rNMP 的 DNA 模板。出乎意料的是,我们发现 PolD 正确地与含有 rNMP 的 DNA 模板的单个核糖核苷酸配对。讨论了关于 rNMP 掺入 DNA 和基因组稳定性的进化情景。