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Replicative Bypass Studies of α-Anomeric Lesions of 2'-Deoxyribonucleosides in Vitro

Nicole L Williams1, Nicholas J Amato1, Yinsheng Wang1

  • 1Environmental Toxicology Graduate Program and ‡Department of Chemistry, University of California , 501 Big Springs Road, Riverside, California 92521-0403, United States.

Insights

Human DNA polymerase eta (Pol η) efficiently bypasses challenging α-anomeric DNA lesions, crucial for maintaining genomic integrity during replication. This polymerase demonstrates high fidelity in nucleotide incorporation opposite these lesions.

Area of Science:

  • Molecular Biology
  • Genetics
  • Biochemistry

Background:

  • Genomic integrity is vital and constantly threatened by DNA damaging agents.
  • Reactive oxygen species (ROS) are significant endogenous DNA damaging agents.
  • Hydroxyl radicals can cause α-anomeric DNA lesions, impacting DNA replication.

Purpose of the Study:

  • To investigate the replicative bypass of α-anomeric DNA lesions (α-dA, α-dT, α-dC, α-dG).
  • To determine the efficiency and fidelity of various translesion synthesis DNA polymerases in bypassing these lesions.

Main Methods:

  • Primer extension assays using purified translesion synthesis DNA polymerases.
  • Steady-state kinetic measurements to assess nucleotide incorporation efficiencies.
  • Analysis of misincorporation frequencies opposite α-anomeric lesions.

Main Results:

  • Human polymerase eta (Pol η) uniquely bypassed all tested α-anomeric lesions (α-dA, α-dT, α-dC, α-dG).
  • Pol η showed the highest efficiency in inserting correct nucleotides, with order α-dA > α-dG > α-dT > α-dC.
  • Pol η exhibited misincorporation of dTMP opposite α-dT (66%) and dCMP opposite α-dC (24%).

Conclusions:

  • Human Pol η plays a critical role in replicating DNA containing α-anomeric lesions.
  • Pol η's efficiency and fidelity are key to mitigating the mutagenic potential of these lesions.
  • Understanding Pol η's mechanism provides insights into DNA repair and genomic stability.

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