AbstractMost types of DNA damage block the passage of the replication machinery. In order to bypass these blocks, cells employ special translesion synthesis (TLS) DNA polymerases, which have lower stringency than replicative polymerases. DNA polymerase η is the major polymerase responsible for bypassing UV lesions in DNA and its absence results in the variant form of the genetic disorder, xeroderma pigmentosum. Other TLS polymerases have specificities for different types of damage, but their precise roles inside the cell have not yet been established. These polymerases are located in replication factories during DNA replication and the polymerase sliding clamp PCNA plays an important role in mediating switching between different polymerases
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Genomic DNA can present impediments to the replication machinery. Different factors assist the repli...
UV-induced cyclobutane pyrimidine dimers (CPDs) in the template DNA strand stall transcription elong...
AbstractMost types of DNA damage block the passage of the replication machinery. In order to bypass ...
Most types of DNA damage block the passage of the replication machinery. In order to bypass these bl...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...
DNA damage is a ubiquitous challenge to replication in cells, as damage causes replicative polymeras...
The past 15 years have seen an explosion in our understanding of how cells replicate damaged DNA and...
When the replication machinery encounters a DNA lesion, it is able to continue to replicate the DNA ...
Replicative DNA polymerases are frequently stalled by DNA lesions. The resulting replication blockag...
In response to DNA damage, TLS (translesion synthesis) allows replicative bypass of various DNA lesi...
The integrity of DNA is essential for the survival of all living organisms. However, cellular DNA i...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Genomic DNA can present impediments to the replication machinery. Different factors assist the repli...
UV-induced cyclobutane pyrimidine dimers (CPDs) in the template DNA strand stall transcription elong...
AbstractMost types of DNA damage block the passage of the replication machinery. In order to bypass ...
Most types of DNA damage block the passage of the replication machinery. In order to bypass these bl...
DNA damage blocks the progression of the replication fork. In order to circumvent the damaged bases,...
DNA damage is a ubiquitous challenge to replication in cells, as damage causes replicative polymeras...
The past 15 years have seen an explosion in our understanding of how cells replicate damaged DNA and...
When the replication machinery encounters a DNA lesion, it is able to continue to replicate the DNA ...
Replicative DNA polymerases are frequently stalled by DNA lesions. The resulting replication blockag...
In response to DNA damage, TLS (translesion synthesis) allows replicative bypass of various DNA lesi...
The integrity of DNA is essential for the survival of all living organisms. However, cellular DNA i...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelit...
Genomic DNA can present impediments to the replication machinery. Different factors assist the repli...
UV-induced cyclobutane pyrimidine dimers (CPDs) in the template DNA strand stall transcription elong...