FEN- 1 and XPG are members of the FEN- 1 family of structure- specific nucleases, which share a conserved active site. FEN- 1 plays a central role in DNA replication, whereas XPG is involved in nucleotide excision repair ( NER). Both FEN- 1 and XPG are active on flap structures, but only XPG cleaves bubble substrates. The spacer region of XPG is dispensable for nuclease activity on flap substrates but is required for NER activity and for efficient processing of bubble substrates. Here, we inserted the spacer region of XPG between the nuclease domains of FEN- 1 to test whether this domain would be sufficient to confer XPG- like substrate specificity and NER activity on a related nuclease. The resulting FEN- 1- XPG hybrid protein is active on...
Human ERCC1/XPF is a structure-specific endonuclease involved in multiple DNA repair pathways. We pr...
Xeroderma pigmentosum group G (XPG) protein is both a functional partner in multiple DNA damage resp...
Processing of Okazaki fragments to complete lagging strand DNA synthesis requires coordination among...
Flap endonuclease-1 (FEN-1) is a structure-specific nuclease best known for its involvement in RNA p...
XPG has structural and catalytic roles in nucleotide excision repair (NER) and belongs to the FEN-1 ...
SummaryFlap endonuclease (FEN1), essential for DNA replication and repair, removes RNA and DNA 5′ fl...
<p><b>Copyright information:</b></p><p>Taken from "Domain swapping between FEN-1 and XPG defines reg...
<p><b>Copyright information:</b></p><p>Taken from "Domain swapping between FEN-1 and XPG defines reg...
This article was made OA through RCUK block grant funds.Flap endonuclease 1 (Fen1) is a highly conse...
16 p.-7 fig.-1 tab.Nucleotide excision repair (NER) is an essential pathway to remove bulky lesions ...
Flap endonuclease-1 (FEN1) is a member of the Rad2 structure-specific nuclease family. FEN1 possesse...
DNA replication and repair frequently involve intermediate two-way junction structures with overhang...
<p><b>Copyright information:</b></p><p>Taken from "Domain swapping between FEN-1 and XPG defines reg...
Fen1 is a key enzyme for the maintenance of genetic stability in archaea and eukaryotes and is class...
FENs (flap endonucleases) play essential roles in DNA replication, pivotally in the resolution of Ok...
Human ERCC1/XPF is a structure-specific endonuclease involved in multiple DNA repair pathways. We pr...
Xeroderma pigmentosum group G (XPG) protein is both a functional partner in multiple DNA damage resp...
Processing of Okazaki fragments to complete lagging strand DNA synthesis requires coordination among...
Flap endonuclease-1 (FEN-1) is a structure-specific nuclease best known for its involvement in RNA p...
XPG has structural and catalytic roles in nucleotide excision repair (NER) and belongs to the FEN-1 ...
SummaryFlap endonuclease (FEN1), essential for DNA replication and repair, removes RNA and DNA 5′ fl...
<p><b>Copyright information:</b></p><p>Taken from "Domain swapping between FEN-1 and XPG defines reg...
<p><b>Copyright information:</b></p><p>Taken from "Domain swapping between FEN-1 and XPG defines reg...
This article was made OA through RCUK block grant funds.Flap endonuclease 1 (Fen1) is a highly conse...
16 p.-7 fig.-1 tab.Nucleotide excision repair (NER) is an essential pathway to remove bulky lesions ...
Flap endonuclease-1 (FEN1) is a member of the Rad2 structure-specific nuclease family. FEN1 possesse...
DNA replication and repair frequently involve intermediate two-way junction structures with overhang...
<p><b>Copyright information:</b></p><p>Taken from "Domain swapping between FEN-1 and XPG defines reg...
Fen1 is a key enzyme for the maintenance of genetic stability in archaea and eukaryotes and is class...
FENs (flap endonucleases) play essential roles in DNA replication, pivotally in the resolution of Ok...
Human ERCC1/XPF is a structure-specific endonuclease involved in multiple DNA repair pathways. We pr...
Xeroderma pigmentosum group G (XPG) protein is both a functional partner in multiple DNA damage resp...
Processing of Okazaki fragments to complete lagging strand DNA synthesis requires coordination among...