Y-family DNA polymerases can replicate past a variety of damaged bases in vitro but, with the exception of DNA polymerase eta (poleta), which is defective in xeroderma pigmentosum variants, there is little information on the functions of these polymerases in vivo. Here, we show that DNA polymerase iota (poliota), like poleta, associates with the replication machinery and accumulates at stalled replication forks following DNA-damaging treatment. We show that poleta and poliota foci form with identical kinetics and spatial distributions, suggesting that localization of these two polymerases is tightly co-ordinated within the nucleus. Furthermore, localization of poliota in replication foci is largely dependent on the presence of poleta. Using...
The progress of replicative DNA polymerases along the replication fork may be impeded by the presenc...
Common fragile sites (CFSs) are inherently unstable genomic loci that are recurrently altered in hum...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...
Y-family DNA polymerases can replicate past a variety of damaged bases in vitro but, with the except...
Y-family DNA polymerases can replicate past a variety of damaged bases in vitro but, with the except...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) eta...
DNA polymerases of the Y-family are involved in translesion DNA synthesis past different types of DN...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) eta...
Switching between replicative and translesion synthesis (TLS) DNA polymerases are crucial events for...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) a...
DNA polymerase eta (Poleta) is responsible for efficient translesion synthesis (TLS) past cis-syn cy...
Most types of DNA damage block replication fork progression during DNA synthesis because replicative...
During translesion synthesis past sites of damaged DNA, specialized Y-family polymerases are employe...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) η a...
Unrepaired DNA lesions are a potent block to replication, leading to replication fork collapse, doub...
The progress of replicative DNA polymerases along the replication fork may be impeded by the presenc...
Common fragile sites (CFSs) are inherently unstable genomic loci that are recurrently altered in hum...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...
Y-family DNA polymerases can replicate past a variety of damaged bases in vitro but, with the except...
Y-family DNA polymerases can replicate past a variety of damaged bases in vitro but, with the except...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) eta...
DNA polymerases of the Y-family are involved in translesion DNA synthesis past different types of DN...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) eta...
Switching between replicative and translesion synthesis (TLS) DNA polymerases are crucial events for...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) a...
DNA polymerase eta (Poleta) is responsible for efficient translesion synthesis (TLS) past cis-syn cy...
Most types of DNA damage block replication fork progression during DNA synthesis because replicative...
During translesion synthesis past sites of damaged DNA, specialized Y-family polymerases are employe...
Y-family DNA polymerases carry out translesion synthesis past damaged DNA. DNA polymerases (pol) η a...
Unrepaired DNA lesions are a potent block to replication, leading to replication fork collapse, doub...
The progress of replicative DNA polymerases along the replication fork may be impeded by the presenc...
Common fragile sites (CFSs) are inherently unstable genomic loci that are recurrently altered in hum...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...