The conserved nuclease-helicase DNA2 has been linked to mitochondrial myopathy, Seckel syndrome, and cancer. Across species, the protein is indispensable for cell proliferation. On the molecular level, DNA2 has been implicated in DNA double-strand break (DSB) repair, checkpoint activation, Okazaki fragment processing (OFP), and telomere homeostasis. More recently, a critical contribution of DNA2 to the replication stress response and recovery of stalled DNA replication forks (RFs) has emerged. Here, we review the available functional and phenotypic data and propose that the major cellular defects associated with DNA2 dysfunction, and the links that exist with human disease, can be rationalized through the fundamental importance of DNA2-depe...
Dna2 is a DNA helicase-endonuclease mediating DSB resection and Okazaki fragment processing. Dna2 ab...
Unlike bacteria, mammalian cells need to complete DNA replication before segregating their chromosom...
The genome of eukaryotic cells is particularly at risk during the S phase of the cell cycle, when me...
The disease-associated nuclease–helicase DNA2 has been implicated in DNA end-resection during DNA do...
DNA2 is an essential nuclease–helicase implicated in DNA repair, lagging-strand DNA synthesis, and t...
Cells have evolved mechanisms to protect, restart and repair perturbed replication forks, allowing f...
DNA2 nuclease/helicase is a structure-specific nuclease, 5′-to-3′ helicase, and DNA-dependent ATPase...
Genome instability is a characteristic of almost all human cancers and is a prerequisite for acquisi...
DNA replication is mediated by a multiprotein complex known as the replisome. With the hexameric MCM...
A fundamental aspect of living organisms is the accurate replication and maintenance of the genome t...
Living organisms must keep their DNA content intact to assure the integrity of their genomic informa...
The ATR and ATM checkpoint kinases preserve the integrity of replicating chromosomes by preventing t...
To elucidate the network that maintains high fidelity genome replication, we have introduced two con...
Dna2 is a highly conserved helicase/nuclease that in yeast participates in Okazaki fragment processi...
Coordination between DNA replication, DNA repair and cell-cycle progression ensures high fidelity DN...
Dna2 is a DNA helicase-endonuclease mediating DSB resection and Okazaki fragment processing. Dna2 ab...
Unlike bacteria, mammalian cells need to complete DNA replication before segregating their chromosom...
The genome of eukaryotic cells is particularly at risk during the S phase of the cell cycle, when me...
The disease-associated nuclease–helicase DNA2 has been implicated in DNA end-resection during DNA do...
DNA2 is an essential nuclease–helicase implicated in DNA repair, lagging-strand DNA synthesis, and t...
Cells have evolved mechanisms to protect, restart and repair perturbed replication forks, allowing f...
DNA2 nuclease/helicase is a structure-specific nuclease, 5′-to-3′ helicase, and DNA-dependent ATPase...
Genome instability is a characteristic of almost all human cancers and is a prerequisite for acquisi...
DNA replication is mediated by a multiprotein complex known as the replisome. With the hexameric MCM...
A fundamental aspect of living organisms is the accurate replication and maintenance of the genome t...
Living organisms must keep their DNA content intact to assure the integrity of their genomic informa...
The ATR and ATM checkpoint kinases preserve the integrity of replicating chromosomes by preventing t...
To elucidate the network that maintains high fidelity genome replication, we have introduced two con...
Dna2 is a highly conserved helicase/nuclease that in yeast participates in Okazaki fragment processi...
Coordination between DNA replication, DNA repair and cell-cycle progression ensures high fidelity DN...
Dna2 is a DNA helicase-endonuclease mediating DSB resection and Okazaki fragment processing. Dna2 ab...
Unlike bacteria, mammalian cells need to complete DNA replication before segregating their chromosom...
The genome of eukaryotic cells is particularly at risk during the S phase of the cell cycle, when me...