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Significant impact of divalent metal ions on the fidelity, sugar selectivity, and drug incorporation efficiency of human PrimPol.

Authors :
Tokarsky, E. John
Wallenmeyer, Petra C.
Phi, Kenneth K.
Suo, Zucai
Source :
DNA Repair. Jan2017, Vol. 49, p51-59. 9p.
Publication Year :
2017

Abstract

Human PrimPol is a recently discovered bifunctional enzyme that displays DNA template-directed primase and polymerase activities. PrimPol has been implicated in nuclear and mitochondrial DNA replication fork progression and restart as well as DNA lesion bypass. Published evidence suggests that PrimPol is a Mn 2+ -dependent enzyme as it shows significantly improved primase and polymerase activities when binding Mn 2+ , rather than Mg 2+ , as a divalent metal ion cofactor. Consistently, our fluorescence anisotropy assays determined that PrimPol binds to a primer/template DNA substrate with affinities of 29 and 979 nM in the presence of Mn 2+ and Mg 2+ , respectively. Our pre-steady-state kinetic analysis revealed that PrimPol incorporates correct dNTPs with 100-fold higher efficiency with Mn 2+ than with Mg 2+ . Notably, the substitution fidelity of PrimPol in the presence of Mn 2+ was determined to be in the range of 3.4 × 10 −2 to 3.8 × 10 −1 , indicating that PrimPol is an error-prone polymerase. Furthermore, we kinetically determined the sugar selectivity of PrimPol to be 57–1800 with Mn 2+ and 150–4500 with Mg 2+ , and found that PrimPol was able to incorporate the triphosphates of two anticancer drugs (cytarabine and gemcitabine), but not two antiviral drugs (emtricitabine and lamivudine). [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15687864
Volume :
49
Database :
Academic Search Index
Journal :
DNA Repair
Publication Type :
Academic Journal
Accession number :
120524414
Full Text :
https://doi.org/10.1016/j.dnarep.2016.11.003