DNA damage can stall the DNA replication machinery, leading to genomic instability. Thus, numerous mechanisms exist to complete genome duplication in the absence of a pristine DNA template, but identification of the enzymes involved remains incomplete. Here, we establish that Primase-Polymerase (PrimPol; CCDC111), an archaeal-eukaryotic primase (AEP) in eukaryotic cells, is involved in chromosomal DNA replication. PrimPol is required for replication fork progression on ultraviolet (UV) lightdamaged DNA templates, possibly mediated by its ability to catalyze translesion synthesis (TLS) of these lesions. This PrimPol UV lesion bypass pathway is not epistatic with the Pol h-dependent pathway and, as a consequence, protects xeroderma pigmentosu...
Replication stress and DNA damage stall replication forks and impede genome synthesis. During S phas...
G quadruplexes (G4s) can present potent blocks to DNA replication. Accurate and timely replication o...
Replication forks often stall at damaged DNA. To overcome these obstructions and complete the DNA du...
PrimPol is a recently identified member of the archaeo-eukaryote primase (AEP) family of primase-pol...
The DNA-directed primase-polymerase PrimPol of the archaeo-eukaryotic primase superfamily represents...
The complex molecular machines responsible for genome replication encounter many obstacles during th...
Eukaryotic Primase-Polymerase (PrimPol) is an enzyme that maintains efficient DNA duplication by rep...
Faithful copying of the genome is essential for life. In eukaryotes, a single archaeo-eukaryotic pr...
DNA damage and secondary structures can stall the replication machinery. Cells possess numerous tole...
PrimPol is the second primase in human cells, the first with the ability to start DNA chains with dN...
Genome stability is of upmost importance to life. DNA polymerases are essential for the duplication...
PrimPol is a DNA damage tolerance enzyme possessing both translesion synthesis (TLS) and primase act...
PrimPol is the second primase discovered in eukaryotic cells, whose function is to restart the stall...
PrimPol is a recently identified polymerase involved in eukaryotic DNA damage tolerance, employed in...
Translesion synthesis (TLS) employs specialized DNA polymerases to bypass replication fork stalling ...
Replication stress and DNA damage stall replication forks and impede genome synthesis. During S phas...
G quadruplexes (G4s) can present potent blocks to DNA replication. Accurate and timely replication o...
Replication forks often stall at damaged DNA. To overcome these obstructions and complete the DNA du...
PrimPol is a recently identified member of the archaeo-eukaryote primase (AEP) family of primase-pol...
The DNA-directed primase-polymerase PrimPol of the archaeo-eukaryotic primase superfamily represents...
The complex molecular machines responsible for genome replication encounter many obstacles during th...
Eukaryotic Primase-Polymerase (PrimPol) is an enzyme that maintains efficient DNA duplication by rep...
Faithful copying of the genome is essential for life. In eukaryotes, a single archaeo-eukaryotic pr...
DNA damage and secondary structures can stall the replication machinery. Cells possess numerous tole...
PrimPol is the second primase in human cells, the first with the ability to start DNA chains with dN...
Genome stability is of upmost importance to life. DNA polymerases are essential for the duplication...
PrimPol is a DNA damage tolerance enzyme possessing both translesion synthesis (TLS) and primase act...
PrimPol is the second primase discovered in eukaryotic cells, whose function is to restart the stall...
PrimPol is a recently identified polymerase involved in eukaryotic DNA damage tolerance, employed in...
Translesion synthesis (TLS) employs specialized DNA polymerases to bypass replication fork stalling ...
Replication stress and DNA damage stall replication forks and impede genome synthesis. During S phas...
G quadruplexes (G4s) can present potent blocks to DNA replication. Accurate and timely replication o...
Replication forks often stall at damaged DNA. To overcome these obstructions and complete the DNA du...