Meiotic recombination plays an essential role in the proper segregation of chromosomes at meiosis I in many sexually reproducing organisms. Meiotic recombination is initiated by the scheduled formation of genome-wide DNA double-strand breaks (DSBs). The timing of DSB formation is strictly controlled because unscheduled DSB formation is detrimental to genome integrity. Here, we investigated the role of DNA damage checkpoint mechanisms in the control of meiotic DSB formation using budding yeast. By using recombination defective mutants in which meiotic DSBs are not repaired, the effect of DNA damage checkpoint mutations on DSB formation was evaluated. The Tel1 (ATM) pathway mainly responds to unresected DSB ends, thus the sae2 mutant backgrou...
CDKs (cyclin-dependent kinases) associate with different cyclins to form different CDK-complexes tha...
Recombination during meiosis in the form of crossover events promotes the segregation of homologous ...
During meiosis, one round of DNA replication is followed by two rounds of chromosome segregation, pr...
<div><p>Meiotic recombination plays an essential role in the proper segregation of chromosomes at me...
Meiotic recombination plays an essential role in the proper segregation of chromosomes at meiosis I ...
Meiotic recombination plays an essential role in the proper segregation of chromosomes at meiosis I ...
During meiosis, formation and repair of programmed DNA double-strand breaks (DSBs) create genetic ex...
During meiosis, one round of DNA replication is followed by two rounds of chromosome segregation, pr...
Numerous DNA double-strand breaks (DSBs) are introduced into the genome in the course of meiotic rec...
<div><p>An essential feature of meiosis is Spo11 catalysis of programmed DNA double strand breaks (D...
An essential feature of meiosis is Spo11 catalysis of programmed DNA double strand breaks (DSBs). Ev...
During meiosis, formation and repair of programmed DNA double-strand breaks (DSBs) create genetic ex...
Numerous DNA double-strand breaks (DSBs) are introduced into the genome in the course of meiotic rec...
An essential feature of meiosis is Spo11 catalysis of programmed DNA double strand breaks (DSBs). Ev...
In the budding yeast Saccharomyces cerevisiae, unnatural stabilization of the cyclin-dependent kinas...
CDKs (cyclin-dependent kinases) associate with different cyclins to form different CDK-complexes tha...
Recombination during meiosis in the form of crossover events promotes the segregation of homologous ...
During meiosis, one round of DNA replication is followed by two rounds of chromosome segregation, pr...
<div><p>Meiotic recombination plays an essential role in the proper segregation of chromosomes at me...
Meiotic recombination plays an essential role in the proper segregation of chromosomes at meiosis I ...
Meiotic recombination plays an essential role in the proper segregation of chromosomes at meiosis I ...
During meiosis, formation and repair of programmed DNA double-strand breaks (DSBs) create genetic ex...
During meiosis, one round of DNA replication is followed by two rounds of chromosome segregation, pr...
Numerous DNA double-strand breaks (DSBs) are introduced into the genome in the course of meiotic rec...
<div><p>An essential feature of meiosis is Spo11 catalysis of programmed DNA double strand breaks (D...
An essential feature of meiosis is Spo11 catalysis of programmed DNA double strand breaks (DSBs). Ev...
During meiosis, formation and repair of programmed DNA double-strand breaks (DSBs) create genetic ex...
Numerous DNA double-strand breaks (DSBs) are introduced into the genome in the course of meiotic rec...
An essential feature of meiosis is Spo11 catalysis of programmed DNA double strand breaks (DSBs). Ev...
In the budding yeast Saccharomyces cerevisiae, unnatural stabilization of the cyclin-dependent kinas...
CDKs (cyclin-dependent kinases) associate with different cyclins to form different CDK-complexes tha...
Recombination during meiosis in the form of crossover events promotes the segregation of homologous ...
During meiosis, one round of DNA replication is followed by two rounds of chromosome segregation, pr...