Bases within DNA are frequently damaged, producing obstacles to efficient and accurate DNA replication by replicative polymerases. Translesion synthesis (TLS) polymerases, via their ability to catalyze nucleotide additions to growing DNA chains across DNA lesions, promote replication of damaged DNA, thus preventing checkpoint activation, genome instability and cell death. In this study, we used C. elegans to determine the contribution of TLS activity on long-term stability of an animal genome. We monitored and compared the types of mutations that accumulate in REV1, REV3, POLH1 and POLK deficient animals that were grown under unchallenged conditions. We also addressed redundancies in TLS activity by combining all deficiencies. Remarkably, a...
DNA must be accurately copied and propagated from one cell division to the next, and from one genera...
Failure to preserve the integrity of the genome is a hallmark of cancer. Recent studies have reveale...
Most types of DNA damage block the passage of the replication machinery. In order to bypass these bl...
Author summaryResearch in the fields of DNA repair and mutagenesis has led to enormous insight into ...
<div><p>Translesion synthesis (TLS) polymerases are specialized DNA polymerases capable of inserting...
Translesion synthesis (TLS) polymerases are specialized DNA polymerases capable of inserting nucleot...
Cells are protected from toxic DNA double-stranded breaks (DSBs) by a number of DNA repair mechanism...
DNA encodes the genetic instructions for living organisms. However, damage to the DNA is inevitable,...
Polymerase Y is a key driver of genome evolution and of CRISPR/Cas9-mediated mutagenesis Robin van S...
To preserve genomic integrity, various mechanisms have evolved to repair DNA double-strand breaks (D...
DNA double-strand breaks (DSBs) can be repaired by three canonical repair pathways. Homologous recom...
Abstract During cell division, replication of the genomic DNA is performed by high-fidelity DNA poly...
Translesion synthesis is a potentially mutagenic method of damage encountered by replication forks i...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...
Guanine-rich DNA sequences can form secondary structures in vitro. In vivo, helicases are responsibl...
DNA must be accurately copied and propagated from one cell division to the next, and from one genera...
Failure to preserve the integrity of the genome is a hallmark of cancer. Recent studies have reveale...
Most types of DNA damage block the passage of the replication machinery. In order to bypass these bl...
Author summaryResearch in the fields of DNA repair and mutagenesis has led to enormous insight into ...
<div><p>Translesion synthesis (TLS) polymerases are specialized DNA polymerases capable of inserting...
Translesion synthesis (TLS) polymerases are specialized DNA polymerases capable of inserting nucleot...
Cells are protected from toxic DNA double-stranded breaks (DSBs) by a number of DNA repair mechanism...
DNA encodes the genetic instructions for living organisms. However, damage to the DNA is inevitable,...
Polymerase Y is a key driver of genome evolution and of CRISPR/Cas9-mediated mutagenesis Robin van S...
To preserve genomic integrity, various mechanisms have evolved to repair DNA double-strand breaks (D...
DNA double-strand breaks (DSBs) can be repaired by three canonical repair pathways. Homologous recom...
Abstract During cell division, replication of the genomic DNA is performed by high-fidelity DNA poly...
Translesion synthesis is a potentially mutagenic method of damage encountered by replication forks i...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...
Guanine-rich DNA sequences can form secondary structures in vitro. In vivo, helicases are responsibl...
DNA must be accurately copied and propagated from one cell division to the next, and from one genera...
Failure to preserve the integrity of the genome is a hallmark of cancer. Recent studies have reveale...
Most types of DNA damage block the passage of the replication machinery. In order to bypass these bl...