Repair of DNA double-strand breaks by homologous recombination (HR) requires a carefully orchestrated sequence of events involving many proteins. One type of HR, synthesis-dependent strand annealing (SDSA), proceeds via the formation of a displacement loop (D-loop) when RAD51-coated single-stranded DNA invades a homologous template. The 3′ end of the single-stranded DNA is extended by DNA synthesis. In SDSA, the D-loop is then disassembled prior to strand annealing. While many helicases can unwind D-loops in vitro, how their action is choreographed in vivo remains to be determined. To clarify the roles of various DNA helicases during SDSA, we used a double-strand gap repair assay to study the outcomes of homologous recombination repair in D...
DNA helicases play pivotal roles in homologous recombination and recombinational DNA repair. They ar...
It is important to study DNA damage such as double strand breaks (DSBs) because DSBs can cause cance...
The Bloom syndrome helicase, BLM, has numerous functions that prevent mitotic crossovers. We used un...
Bloom syndrome is a rare disorder associated with cancer predisposition and genomic instability and ...
DNA double strand breaks (DSB) can be repaired either via a sequence independent joining of DNA ends...
Repair of DNA damage is essential to the preservation of genomic stability. During repair of double-...
Several helicases function during repair of double-strand breaks and handling of blocked or stalled ...
DNA double-strand breaks (DSBs) pose a serious threat to genomic integrity. If unrepaired, they can ...
DNA double-strand breaks (DSBs), a major source of genome instability, are often repaired through ho...
In most meiotic systems, recombination is essential to form connections between homologs that ensure...
ABSTRACT The Bloom's syndrome helicase, BLM, is a member of the highly conserved RecQ family, a...
Repair of DNA double-strand breaks can occur by either nonhomologous end joining or homologous recom...
Genetic analysis of the Drosophila Bloom's syndrome helicase homolog (mus309/DmBLM) indicates that D...
The Bloom’s syndrome helicase, BLM, is a member of the highly conserved RecQ family, and possesses b...
International audienceSegmental duplications (SDs) are low-copy repeats of DNA segments that have lo...
DNA helicases play pivotal roles in homologous recombination and recombinational DNA repair. They ar...
It is important to study DNA damage such as double strand breaks (DSBs) because DSBs can cause cance...
The Bloom syndrome helicase, BLM, has numerous functions that prevent mitotic crossovers. We used un...
Bloom syndrome is a rare disorder associated with cancer predisposition and genomic instability and ...
DNA double strand breaks (DSB) can be repaired either via a sequence independent joining of DNA ends...
Repair of DNA damage is essential to the preservation of genomic stability. During repair of double-...
Several helicases function during repair of double-strand breaks and handling of blocked or stalled ...
DNA double-strand breaks (DSBs) pose a serious threat to genomic integrity. If unrepaired, they can ...
DNA double-strand breaks (DSBs), a major source of genome instability, are often repaired through ho...
In most meiotic systems, recombination is essential to form connections between homologs that ensure...
ABSTRACT The Bloom's syndrome helicase, BLM, is a member of the highly conserved RecQ family, a...
Repair of DNA double-strand breaks can occur by either nonhomologous end joining or homologous recom...
Genetic analysis of the Drosophila Bloom's syndrome helicase homolog (mus309/DmBLM) indicates that D...
The Bloom’s syndrome helicase, BLM, is a member of the highly conserved RecQ family, and possesses b...
International audienceSegmental duplications (SDs) are low-copy repeats of DNA segments that have lo...
DNA helicases play pivotal roles in homologous recombination and recombinational DNA repair. They ar...
It is important to study DNA damage such as double strand breaks (DSBs) because DSBs can cause cance...
The Bloom syndrome helicase, BLM, has numerous functions that prevent mitotic crossovers. We used un...