7u7v Citations

In crystallo observation of three metal ion promoted DNA polymerase misincorporation.

OpenAccess logo Nat Commun 13 2346 (2022)

Abstract

Error-free replication of DNA is essential for life. Despite the proofreading capability of several polymerases, intrinsic polymerase fidelity is in general much higher than what base-pairing energies can provide. Although researchers have investigated this long-standing question with kinetics, structural determination, and computational simulations, the structural factors that dictate polymerase fidelity are not fully resolved. Time-resolved crystallography has elucidated correct nucleotide incorporation and established a three-metal-ion-dependent catalytic mechanism for polymerases. Using X-ray time-resolved crystallography, we visualize the complete DNA misincorporation process catalyzed by DNA polymerase η. The resulting molecular snapshots suggest primer 3´-OH alignment mediated by A-site metal ion binding is the key step in substrate discrimination. Moreover, we observe that C-site metal ion binding preceded the nucleotidyl transfer reaction and demonstrate that the C-site metal ion is strictly required for misincorporation. Our results highlight the essential but separate roles of the three metal ions in DNA synthesis.

Reviews citing this publication (2)

  1. New insights into DNA polymerase mechanisms provided by time-lapse crystallography. Weaver TM, Washington MT, Freudenthal BD. Curr Opin Struct Biol 77 102465 (2022)
  2. The catalytic mechanism, metal dependence, substrate specificity, and biodiversity of ribonuclease H. Pang J, Guo Q, Lu Z. Front Microbiol 13 1034811 (2022)

Articles citing this publication (3)