<script type="text/javascript">
<!--
document.write('<div id="oa_widget"></div>');
document.write('<script type="text/javascript" src="https://www.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=undefined&type=result"></script>');
-->
</script>Cohesin SMC1β protects telomeres in meiocytes
 Copyright policy )
 Copyright policy )Cohesin SMC1β protects telomeres in meiocytes
Meiosis-specific mammalian cohesin SMC1β is required for complete sister chromatid cohesion and proper axes/loop structure of axial elements (AEs) and synaptonemal complexes (SCs). During prophase I, telomeres attach to the nuclear envelope (NE), but in Smc1β−/− meiocytes, one fifth of their telomeres fail to attach. This study reveals that SMC1β serves a specific role at telomeres, which is independent of its role in determining AE/SC length and loop extension. SMC1β is necessary to prevent telomere shortening, and SMC3, present in all known cohesin complexes, properly localizes to telomeres only if SMC1β is present. Very prominently, telomeres in Smc1β−/− spermatocytes and oocytes loose their structural integrity and suffer a range of abnormalities. These include disconnection from SCs and formation of large telomeric protein–DNA extensions, extended telomere bridges between SCs, ring-like chromosomes, intrachromosomal telomeric repeats, and a reduction of SUN1 foci in the NE. We suggest that a telomere structure protected from DNA rearrangements depends on SMC1β.
-  Max Planck Institute of Neurobiology Germany
-  Karolinska Institute Sweden
-  Max Planck Society Germany
-  TU Dresden Germany
- MOUNT SINAI SCHOOL OF MEDICINE OF NYU
Male, mice, Chromosomal Proteins, Non-Histone, Cell Cycle Proteins, epigenetic regulation, Mice, nuclear-envelope, Spermatocytes, meiosis, Animals, mammalian meiotic telomeres; synaptonemal complex; saccharomyces-cerevisiae; epigenetic regulation; nuclear-envelope; germ-cells; meiosis; mouse; mice; recombination, Cohesins, mouse, Research Articles, Mice, Knockout, synaptonemal complex, germ-cells, Telomere, recombination, Meiosis, Microscopy, Electron, mammalian meiotic telomeres, Oocytes, saccharomyces-cerevisiae, Female
Male, mice, Chromosomal Proteins, Non-Histone, Cell Cycle Proteins, epigenetic regulation, Mice, nuclear-envelope, Spermatocytes, meiosis, Animals, mammalian meiotic telomeres; synaptonemal complex; saccharomyces-cerevisiae; epigenetic regulation; nuclear-envelope; germ-cells; meiosis; mouse; mice; recombination, Cohesins, mouse, Research Articles, Mice, Knockout, synaptonemal complex, germ-cells, Telomere, recombination, Meiosis, Microscopy, Electron, mammalian meiotic telomeres, Oocytes, saccharomyces-cerevisiae, Female
16 Research products, page 1 of 2
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2018IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- chevron_left 
- 1
- 2
- chevron_right 
- citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).- 82 - popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.- Top 10% - influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).- Top 10% - impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.- Top 10% 
