Several helicases function during repair of double-strand breaks and handling of blocked or stalled replication forks to promote pathways that prevent formation of crossovers. Among these are the Bloom syndrome helicase BLM and the Fanconi anemia group M (FANCM) helicase. To better understand functions of these helicases, we compared phenotypes of Drosophila melanogaster Blm and Fancm mutants. As previously reported for BLM, FANCM has roles in responding to several types of DNA damage in preventing mitotic and meiotic crossovers and in promoting the synthesis-dependent strand annealing pathway for repair of a double-strand gap. In most assays, the phenotype of Fancm mutants is less severe than that of Blm mutants, and the phenotype of Blm F...
DNA double strand breaks (DSB) can be repaired either via a sequence independent joining of DNA ends...
Meiotic crossovers (COs) have two important roles, shuffling genetic information and ensuring proper...
Generation of meiotic crossovers in many eukaryotes requires the elimination of anti-crossover activ...
Several helicases function during repair of double-strand breaks and handling of blocked or stalled ...
Repair of DNA damage is essential to the preservation of genomic stability. During repair of double-...
The DNA damage response in eukaryotes involves multiple, complex, and often redundant pathways that ...
The Bloom syndrome helicase, BLM, has numerous functions that prevent mitotic crossovers. We used un...
DNA repair mechanisms in mitotically proliferating cells avoid generating crossovers, which can cont...
Bloom Syndrome, a rare human disorder characterized by genomic instability and predisposition to can...
Repair of DNA double-strand breaks by homologous recombination (HR) requires a carefully orchestrate...
Bloom syndrome is a rare disorder associated with cancer predisposition and genomic instability and ...
Bloom Syndrome is a rare autosomal recessive disorder in humans caused by mutation of the BLM gene t...
In most sexually reproducing organisms, crossover formation between homologous chromosomes is necess...
How the Fanconi anaemia (FA) chromosome stability pathway functions to cope with interstrand crossli...
Mus81-Mms4 (Mus81-Eme1 in some species) is a heterodimeric DNA structure-specific endonuclease that ...
DNA double strand breaks (DSB) can be repaired either via a sequence independent joining of DNA ends...
Meiotic crossovers (COs) have two important roles, shuffling genetic information and ensuring proper...
Generation of meiotic crossovers in many eukaryotes requires the elimination of anti-crossover activ...
Several helicases function during repair of double-strand breaks and handling of blocked or stalled ...
Repair of DNA damage is essential to the preservation of genomic stability. During repair of double-...
The DNA damage response in eukaryotes involves multiple, complex, and often redundant pathways that ...
The Bloom syndrome helicase, BLM, has numerous functions that prevent mitotic crossovers. We used un...
DNA repair mechanisms in mitotically proliferating cells avoid generating crossovers, which can cont...
Bloom Syndrome, a rare human disorder characterized by genomic instability and predisposition to can...
Repair of DNA double-strand breaks by homologous recombination (HR) requires a carefully orchestrate...
Bloom syndrome is a rare disorder associated with cancer predisposition and genomic instability and ...
Bloom Syndrome is a rare autosomal recessive disorder in humans caused by mutation of the BLM gene t...
In most sexually reproducing organisms, crossover formation between homologous chromosomes is necess...
How the Fanconi anaemia (FA) chromosome stability pathway functions to cope with interstrand crossli...
Mus81-Mms4 (Mus81-Eme1 in some species) is a heterodimeric DNA structure-specific endonuclease that ...
DNA double strand breaks (DSB) can be repaired either via a sequence independent joining of DNA ends...
Meiotic crossovers (COs) have two important roles, shuffling genetic information and ensuring proper...
Generation of meiotic crossovers in many eukaryotes requires the elimination of anti-crossover activ...