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DNA Dynamics and Chromosome Structure

Requirement of Watson-Crick Hydrogen Bonding for DNA Synthesis by Yeast DNA Polymerase η

, , , &
Pages 5107-5112 | Received 19 Mar 2003, Accepted 25 Apr 2003, Published online: 27 Mar 2023
 

Abstract

Classical high-fidelity DNA polymerases discriminate between the correct and incorrect nucleotides by using geometric constraints imposed by the tight fit of the active site with the incipient base pair. Consequently, Watson-Crick (W-C) hydrogen bonding between the bases is not required for the efficiency and accuracy of DNA synthesis by these polymerases. DNA polymerase η (Polη) is a low-fidelity enzyme able to replicate through DNA lesions. Using difluorotoluene, a nonpolar isosteric analog of thymine unable to form W-C hydrogen bonds with adenine, we found that the efficiency and accuracy of nucleotide incorporation by Polη are severely impaired. From these observations, we suggest that W-C hydrogen bonding is required for DNA synthesis by Polη; in this regard, Polη differs strikingly from classical high-fidelity DNA polymerases.

View correction statement:
Delineation of a Novel Pathway That Regulates CD154 (CD40 Ligand) Expression

ACKNOWLEDGMENTS

This work was supported by National Institutes of Health grants GM19261 and GM52956.

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