Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse

Crossing over is a critical process during meiosis, although the regulation of this process still remains somewhat elusive. Here, the authors show that PRR19 partners with CNTD1 to enable formation of crossover-specific recombination complexes in mouse germ cells.

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Autores principales: Anastasiia Bondarieva, Kavya Raveendran, Vladyslav Telychko, H. B. D. Prasada Rao, Ramya Ravindranathan, Chrysoula Zorzompokou, Friederike Finsterbusch, Ihsan Dereli, Frantzeskos Papanikos, Daniel Tränkner, Alexander Schleiffer, Ji-Feng Fei, Anna Klimova, Masaru Ito, Dhananjaya S. Kulkarni, Ingo Roeder, Neil Hunter, Attila Tóth
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/380ea6fcb06a43c3808405a22b032e52
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spelling oai:doaj.org-article:380ea6fcb06a43c3808405a22b032e522021-12-02T17:40:29ZProline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse10.1038/s41467-020-16885-32041-1723https://doaj.org/article/380ea6fcb06a43c3808405a22b032e522020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16885-3https://doaj.org/toc/2041-1723Crossing over is a critical process during meiosis, although the regulation of this process still remains somewhat elusive. Here, the authors show that PRR19 partners with CNTD1 to enable formation of crossover-specific recombination complexes in mouse germ cells.Anastasiia BondarievaKavya RaveendranVladyslav TelychkoH. B. D. Prasada RaoRamya RavindranathanChrysoula ZorzompokouFriederike FinsterbuschIhsan DereliFrantzeskos PapanikosDaniel TränknerAlexander SchleifferJi-Feng FeiAnna KlimovaMasaru ItoDhananjaya S. KulkarniIngo RoederNeil HunterAttila TóthNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-20 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Anastasiia Bondarieva
Kavya Raveendran
Vladyslav Telychko
H. B. D. Prasada Rao
Ramya Ravindranathan
Chrysoula Zorzompokou
Friederike Finsterbusch
Ihsan Dereli
Frantzeskos Papanikos
Daniel Tränkner
Alexander Schleiffer
Ji-Feng Fei
Anna Klimova
Masaru Ito
Dhananjaya S. Kulkarni
Ingo Roeder
Neil Hunter
Attila Tóth
Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse
description Crossing over is a critical process during meiosis, although the regulation of this process still remains somewhat elusive. Here, the authors show that PRR19 partners with CNTD1 to enable formation of crossover-specific recombination complexes in mouse germ cells.
format article
author Anastasiia Bondarieva
Kavya Raveendran
Vladyslav Telychko
H. B. D. Prasada Rao
Ramya Ravindranathan
Chrysoula Zorzompokou
Friederike Finsterbusch
Ihsan Dereli
Frantzeskos Papanikos
Daniel Tränkner
Alexander Schleiffer
Ji-Feng Fei
Anna Klimova
Masaru Ito
Dhananjaya S. Kulkarni
Ingo Roeder
Neil Hunter
Attila Tóth
author_facet Anastasiia Bondarieva
Kavya Raveendran
Vladyslav Telychko
H. B. D. Prasada Rao
Ramya Ravindranathan
Chrysoula Zorzompokou
Friederike Finsterbusch
Ihsan Dereli
Frantzeskos Papanikos
Daniel Tränkner
Alexander Schleiffer
Ji-Feng Fei
Anna Klimova
Masaru Ito
Dhananjaya S. Kulkarni
Ingo Roeder
Neil Hunter
Attila Tóth
author_sort Anastasiia Bondarieva
title Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse
title_short Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse
title_full Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse
title_fullStr Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse
title_full_unstemmed Proline-rich protein PRR19 functions with cyclin-like CNTD1 to promote meiotic crossing over in mouse
title_sort proline-rich protein prr19 functions with cyclin-like cntd1 to promote meiotic crossing over in mouse
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/380ea6fcb06a43c3808405a22b032e52
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