Beijing Computational Science Research Center, Beijing 100193, China.
Shanghai Center for Systems Biomedicine, Shanghai JiaoTong University, Shanghai 200240, China.
Nucleic Acids Res. 2019 May 21;47(9):4721-4735. doi: 10.1093/nar/gkz213.
An elongation cycle of a transcribing RNA polymerase (RNAP) usually consists of multiple kinetics steps, so there exist multiple kinetic checkpoints where non-cognate nucleotides can be selected against. We conducted comprehensive free energy calculations on various nucleotide insertions for viral T7 RNAP employing all-atom molecular dynamics simulations. By comparing insertion free energy profiles between the non-cognate nucleotide species (rGTP and dATP) and a cognate one (rATP), we obtained selection free energetics from the nucleotide pre-insertion to the insertion checkpoints, and further inferred the selection energetics down to the catalytic stage. We find that the insertion of base mismatch rGTP proceeds mainly through an off-path along which both pre-insertion screening and insertion inhibition play significant roles. In comparison, the selection against dATP is found to go through an off-path pre-insertion screening along with an on-path insertion inhibition. Interestingly, we notice that two magnesium ions switch roles of leave and stay during the dATP on-path insertion. Finally, we infer that substantial selection energetic is still required to catalytically inhibit the mismatched rGTP to achieve an elongation error rate ∼10-4 or lower; while no catalytic selection seems to be further needed against dATP to obtain an error rate ∼10-2.
转录 RNA 聚合酶 (RNAP) 的延伸循环通常由多个动力学步骤组成,因此存在多个动力学检查点,在这些检查点可以选择非同源核苷酸。我们通过全原子分子动力学模拟对病毒 T7 RNAP 的各种核苷酸插入进行了全面的自由能计算。通过比较非同源核苷酸(rGTP 和 dATP)和同源核苷酸(rATP)之间的插入自由能谱,我们从核苷酸预插入到插入检查点获得了选择自由能,并进一步推断了催化阶段的选择自由能。我们发现,碱基错配 rGTP 的插入主要通过一条非路径进行,其中预插入筛选和插入抑制都起着重要作用。相比之下,发现对 dATP 的选择是通过预插入筛选的非路径以及插入抑制的路径进行的。有趣的是,我们注意到在 dATP 的路径插入过程中,两个镁离子在离开和停留的作用之间切换。最后,我们推断出,为了催化抑制不匹配的 rGTP 以实现约 10-4 或更低的延伸错误率,仍然需要大量的选择能量;而对于获得约 10-2 的错误率,似乎不需要对 dATP 进行进一步的催化选择。