Polθ reverse transcribes RNA and promotes RNA-templated DNA repair

Gurushankar Chandramouly(Thomas Jefferson University), Jiemin Zhao(University of Southern California), Shane McDevitt(Thomas Jefferson University), Timur Rusanov(Thomas Jefferson University), Trung Hoàng(Thomas Jefferson University), Nikita Borisonnik(Thomas Jefferson University), Taylor Treddinick(Thomas Jefferson University), Felicia Wednesday Lopezcolorado(City of Hope), Tatiana Kent(Thomas Jefferson University), Labiba A. Siddique(Thomas Jefferson University), Joseph S. Mallon(Thomas Jefferson University), Jacklyn Huhn(Thomas Jefferson University), Zainab Shoda(Thomas Jefferson University), Ekaterina Kashkina(Thomas Jefferson University), Alessandra Brambati(New York University), Jeremy M. Stark(City of Hope), Xiaojiang S. Chen(University of Southern California), Richard T. Pomerantz(Thomas Jefferson University)
Science Advances
June 11, 2021
Cited by 103Open Access
Full Text

Abstract

Genome-embedded ribonucleotides arrest replicative DNA polymerases (Pols) and cause DNA breaks. Whether mammalian DNA repair Pols efficiently use template ribonucleotides and promote RNA-templated DNA repair synthesis remains unknown. We find that human Polθ reverse transcribes RNA, similar to retroviral reverse transcriptases (RTs). Polθ exhibits a significantly higher velocity and fidelity of deoxyribonucleotide incorporation on RNA versus DNA. The 3.2-Å crystal structure of Polθ on a DNA/RNA primer-template with bound deoxyribonucleotide reveals that the enzyme undergoes a major structural transformation within the thumb subdomain to accommodate A-form DNA/RNA and forms multiple hydrogen bonds with template ribose 2'-hydroxyl groups like retroviral RTs. Last, we find that Polθ promotes RNA-templated DNA repair in mammalian cells. These findings suggest that Polθ was selected to accommodate template ribonucleotides during DNA repair.


Related Papers

No related papers found

Powered by citation graph analysis