Meiotic chromosome movement: what’s lamin got to do with it?
Active meiotic chromosome movements are a universally conserved feature. They occur at the early stages of prophase of the first meiotic division and support the chromosome pairing process by (1) efficiently installing the synaptonemal complex between homologous chromosomes, (2) discouraging inadver...
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doaj-087ecb64220c4de090d7fc2fae59b1aa2020-11-24T23:51:17ZengTaylor & Francis GroupNucleus1949-10341949-10422019-01-011011610.1080/19491034.2019.15724131572413Meiotic chromosome movement: what’s lamin got to do with it?Dimitra Paouneskou0Verena Jantsch1University of ViennaUniversity of ViennaActive meiotic chromosome movements are a universally conserved feature. They occur at the early stages of prophase of the first meiotic division and support the chromosome pairing process by (1) efficiently installing the synaptonemal complex between homologous chromosomes, (2) discouraging inadvertent chromosome interactions and (3) bringing homologous chromosomes into proximity. Chromosome movements are driven by forces in the cytoplasm, which are passed on to chromosome ends attached to the nuclear periphery by nuclear-membrane-spanning protein modules. In this extra view, we highlight our recent studies into the role of the nuclear lamina during this process to emphasize that it is a highly conserved structure in metazoans. The nuclear lamina forms a rigid proteinaceous network that underlies the inner nuclear membrane to provide stability to the nucleus. Misdemeanors of the nuclear lamina during meiosis has deleterious consequences for the viability and health of the offspring, highlighting the importance of a functional nuclear lamina during this cell cycle stage. Abbreviations: DSB: DNA double strand break; LEM: LAP2, Emerin, MAN1; LINC: LInker of the Nucleoskeleton and Cytoskeleton; RPM: rapid prophase movement; SUN/KASH: Sad1p, UNC-84/Klarsicht, ANC-1, Syne Homologyhttp://dx.doi.org/10.1080/19491034.2019.1572413meiosischromosome movementlinc complexlaminac. elegans |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dimitra Paouneskou Verena Jantsch |
spellingShingle |
Dimitra Paouneskou Verena Jantsch Meiotic chromosome movement: what’s lamin got to do with it? Nucleus meiosis chromosome movement linc complex lamina c. elegans |
author_facet |
Dimitra Paouneskou Verena Jantsch |
author_sort |
Dimitra Paouneskou |
title |
Meiotic chromosome movement: what’s lamin got to do with it? |
title_short |
Meiotic chromosome movement: what’s lamin got to do with it? |
title_full |
Meiotic chromosome movement: what’s lamin got to do with it? |
title_fullStr |
Meiotic chromosome movement: what’s lamin got to do with it? |
title_full_unstemmed |
Meiotic chromosome movement: what’s lamin got to do with it? |
title_sort |
meiotic chromosome movement: what’s lamin got to do with it? |
publisher |
Taylor & Francis Group |
series |
Nucleus |
issn |
1949-1034 1949-1042 |
publishDate |
2019-01-01 |
description |
Active meiotic chromosome movements are a universally conserved feature. They occur at the early stages of prophase of the first meiotic division and support the chromosome pairing process by (1) efficiently installing the synaptonemal complex between homologous chromosomes, (2) discouraging inadvertent chromosome interactions and (3) bringing homologous chromosomes into proximity. Chromosome movements are driven by forces in the cytoplasm, which are passed on to chromosome ends attached to the nuclear periphery by nuclear-membrane-spanning protein modules. In this extra view, we highlight our recent studies into the role of the nuclear lamina during this process to emphasize that it is a highly conserved structure in metazoans. The nuclear lamina forms a rigid proteinaceous network that underlies the inner nuclear membrane to provide stability to the nucleus. Misdemeanors of the nuclear lamina during meiosis has deleterious consequences for the viability and health of the offspring, highlighting the importance of a functional nuclear lamina during this cell cycle stage. Abbreviations: DSB: DNA double strand break; LEM: LAP2, Emerin, MAN1; LINC: LInker of the Nucleoskeleton and Cytoskeleton; RPM: rapid prophase movement; SUN/KASH: Sad1p, UNC-84/Klarsicht, ANC-1, Syne Homology |
topic |
meiosis chromosome movement linc complex lamina c. elegans |
url |
http://dx.doi.org/10.1080/19491034.2019.1572413 |
work_keys_str_mv |
AT dimitrapaouneskou meioticchromosomemovementwhatslamingottodowithit AT verenajantsch meioticchromosomemovementwhatslamingottodowithit |
_version_ |
1725476574156816384 |