<div><p>Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk of aneuploid pregnancy increases dramatically as women age. Accurate segregation demands that sister chromatid cohesion remain intact for decades in human oocytes, and gradual loss of the original cohesive linkages established in fetal oocytes is proposed to be a major cause of age-dependent segregation errors. Here we demonstrate that maintenance of meiotic cohesion in Drosophila oocytes during prophase I requires an active rejuvenation program, and provide mechanistic insight into the molecular events that underlie rejuvenation. Gal4/UAS inducible knockdown of the cohesion establishment factor Eco after meiotic S phase, but before o...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...
Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk ...
Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk ...
Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk ...
In humans, errors in meiotic chromosome segregation that produce aneuploid gametes increase dramatic...
In humans, meiotic chromosome segregation errors increase dramatically as women age, but the molecul...
AbstractAccurate chromosome partitioning during cell division requires that cohesion hold sister chr...
SummarySister chromatid cohesion mediated by the cohesin complex is essential for chromosome segrega...
Sister chromatid cohesion is essential for cell division. During meiosis, it is also required for pr...
AbstractAccurate chromosome partitioning during cell division requires that cohesion hold sister chr...
<div><p>Aneuploidy in fetal chromosomes is one of the causes of pregnancy loss and of congenital bir...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...
Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk ...
Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk ...
Chromosome segregation errors in human oocytes are the leading cause of birth defects, and the risk ...
In humans, errors in meiotic chromosome segregation that produce aneuploid gametes increase dramatic...
In humans, meiotic chromosome segregation errors increase dramatically as women age, but the molecul...
AbstractAccurate chromosome partitioning during cell division requires that cohesion hold sister chr...
SummarySister chromatid cohesion mediated by the cohesin complex is essential for chromosome segrega...
Sister chromatid cohesion is essential for cell division. During meiosis, it is also required for pr...
AbstractAccurate chromosome partitioning during cell division requires that cohesion hold sister chr...
<div><p>Aneuploidy in fetal chromosomes is one of the causes of pregnancy loss and of congenital bir...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...