Pif1 family helicases promote mutation avoidance during DNA replication

Author:

Zhou Zhi-Xiong1,Follonier Cindy2,Lujan Scott A1ORCID,Burkholder Adam B3,Zakian Virginia A2,Kunkel Thomas A1ORCID

Affiliation:

1. Genome Integrity & Structural Biology Laboratory, Princeton University , Princeton, NJ 08544, USA

2. Department of Molecular Biology, Lewis Thomas Laboratory, Princeton University , Princeton , NJ 08544 , USA

3. Integrative Bioinformatics Support Group, NIH/NIEHS, DHHS, Research Triangle Park , NC 27709 , USA

Abstract

Abstract Pif1 family 5′ → 3′ DNA helicases are important for replication fork progression and genome stability. The budding yeast Saccharomyces cerevisiae encodes two Pif1 family helicases, Rrm3 and Pif1, both of which are multi-functional. Here we describe novel functions for Rrm3 in promoting mutation avoidance during DNA replication. We show that loss of RRM3 results in elevated spontaneous mutations made by DNA polymerases Pols ϵ and δ, which are subject to DNA mismatch repair. The absence of RRM3 also causes higher mutagenesis by the fourth B-family DNA polymerase Pol ζ. By genome-wide analysis, we show that the mutational consequences due to loss of RRM3 vary depending on the genomic locus. Rrm3 promotes the accuracy of DNA replication by Pols ϵ and δ across the genome, and it is particularly important for preventing Pol ζ-dependent mutagenesis at tRNA genes. In addition, mutation avoidance by Rrm3 depends on its helicase activity, and Pif1 serves as a backup for Rrm3 in suppressing mutagenesis. We present evidence that the sole human Pif1 family helicase in human cells likely also promotes replication fidelity, suggesting that a role for Pif1 family helicases in mutation avoidance may be evolutionarily conserved, a possible underlying mechanism for its potential tumor-suppressor function.

Funder

NIH

NIEHS

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference68 articles.

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