Sister chromatid cohesion is essential for cell division. During meiosis, it is also required for proper synapsis of pairs of sister chromatids and for chiasma formation and maintenance. Since mammalian oocytes remain arrested in late prophase for a very long period—up to five decades in humans—the preservation of cohesion throughout this period is a formidable challenge. Mouse models with cohesin deficiencies and aging wild-type mice showed that this challenge is not fully met: cohesion weakens and deteriorates with increasing age. These recent findings have highly significant implications for our comprehension of the genesis of aneuploidies
Cohesins are chromosomal proteins that form complexes involved in the maintenance of sister chromati...
<div><p>Chromosome segregation errors in human oocytes are the leading cause of birth defects, and t...
Aneuploidy is a leading genetic cause of birth defects and lower implantation rates in humans. Most ...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
<div><p>Aneuploidy in fetal chromosomes is one of the causes of pregnancy loss and of congenital bir...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
Aneuploidy in fetal chromosomes is one of the causes of pregnancy loss and of congenital birth defec...
SummarySister chromatid cohesion mediated by the cohesin complex is essential for chromosome segrega...
SummaryBackgroundThe growing trend for women to postpone childbearing has resulted in a dramatic inc...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...
During female meiosis, bivalent chromosomes are thought to be held together from birth until ovulati...
During female meiosis, bivalent chromosomes are thought to be held together from birth until ovulati...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
Cohesins are chromosomal proteins that form complexes involved in the maintenance of sister chromati...
<div><p>Chromosome segregation errors in human oocytes are the leading cause of birth defects, and t...
Aneuploidy is a leading genetic cause of birth defects and lower implantation rates in humans. Most ...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
<div><p>Aneuploidy in fetal chromosomes is one of the causes of pregnancy loss and of congenital bir...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
Aneuploidy in fetal chromosomes is one of the causes of pregnancy loss and of congenital birth defec...
SummarySister chromatid cohesion mediated by the cohesin complex is essential for chromosome segrega...
SummaryBackgroundThe growing trend for women to postpone childbearing has resulted in a dramatic inc...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...
During female meiosis, bivalent chromosomes are thought to be held together from birth until ovulati...
During female meiosis, bivalent chromosomes are thought to be held together from birth until ovulati...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
Cohesins are chromosomal proteins that form complexes involved in the maintenance of sister chromati...
<div><p>Chromosome segregation errors in human oocytes are the leading cause of birth defects, and t...
Aneuploidy is a leading genetic cause of birth defects and lower implantation rates in humans. Most ...