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of 5
pro vyhledávání: '"Lisa-Marie Kuhl"'
Autor:
Nadine Vincenten, Lisa-Marie Kuhl, Isabel Lam, Ashwini Oke, Alastair RW Kerr, Andreas Hochwagen, Jennifer Fung, Scott Keeney, Gerben Vader, Adèle L Marston
Publikováno v:
eLife, Vol 4 (2015)
During meiosis, crossover recombination is essential to link homologous chromosomes and drive faithful chromosome segregation. Crossover recombination is non-random across the genome, and centromere-proximal crossovers are associated with an increase
Externí odkaz:
https://doaj.org/article/d9545cc4fea14f88afad30f21144ad85
Autor:
Gerben Vader, Lisa Marie Kuhl
Publikováno v:
Yeast (Chichester, England)
Yeast
Yeast
In meiosis, DNA break formation and repair are essential for the formation of crossovers between homologous chromosomes. Without crossover formation, faithful meiotic chromosome segregation and sexual reproduction cannot occur. Crossover formation is
Autor:
Vasso Makrantoni, Adele L. Marston, Gerben Vader, Lisa Marie Kuhl, Animish N. Vaze, Sarah Recknagel
Publikováno v:
Genetics, 216(2), 395-408. Genetics Society of America
Genetics
Kuhl, L M, Makrantoni, V, Recknagel, S, Vaze, A N, Marston, A L & Vader, G 2020, ' A dCas9-based system identifies a central role for Ctf19 in kinetochore-derived suppression of meiotic recombination ', Genetics, vol. 216, no. 2, pp. 395-408 . https://doi.org/10.1534/genetics.120.303384
Genetics
Kuhl, L M, Makrantoni, V, Recknagel, S, Vaze, A N, Marston, A L & Vader, G 2020, ' A dCas9-based system identifies a central role for Ctf19 in kinetochore-derived suppression of meiotic recombination ', Genetics, vol. 216, no. 2, pp. 395-408 . https://doi.org/10.1534/genetics.120.303384
A dCas9-based system is developed to query the regulation of kinetochore-driven meiotic recombinational control....
In meiosis, crossover (CO) formation between homologous chromosomes is essential for faithful segregation. However, misplaced mei
In meiosis, crossover (CO) formation between homologous chromosomes is essential for faithful segregation. However, misplaced mei
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::10fcf395a3b637103a5e9db83a50c0d9
https://research.vumc.nl/en/publications/e9eee7dd-da13-424c-9d14-1e45e06c9463
https://research.vumc.nl/en/publications/e9eee7dd-da13-424c-9d14-1e45e06c9463
Author response: The kinetochore prevents centromere-proximal crossover recombination during meiosis
Autor:
Jennifer C. Fung, Nadine Vincenten, Ashwini Oke, Lisa-Marie Kuhl, Alastair R.W. Kerr, Isabel Lam, Adele L. Marston, Scott Keeney, Gerben Vader, Andreas Hochwagen
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::a8423e1e46df4fe32268d1d6fed4d257
https://doi.org/10.7554/elife.10850.036
https://doi.org/10.7554/elife.10850.036
Autor:
Gerben Vader, Lisa Marie Kuhl, Scott Keeney, Andreas Hochwagen, Jennifer C. Fung, Alastair R.W. Kerr, Isabel Lam, Nadine Vincenten, Ashwini Oke, Adele L. Marston
Publikováno v:
eLife
Vincenten, N, Kuhl, L M, Lam, I, Oke, A, Kerr, A R W, Hochwagen, A, Fung, J, Keeney, S, Vader, G & Marston, A L 2015, ' The kinetochore prevents centromere-proximal crossover recombination during meiosis ', eLIFE, vol. 4, e10850 . https://doi.org/10.7554/eLife.10850
eLife, Vol 4 (2015)
Vincenten, N, Kuhl, L M, Lam, I, Oke, A, Kerr, A R W, Hochwagen, A, Fung, J, Keeney, S, Vader, G & Marston, A L 2015, ' The kinetochore prevents centromere-proximal crossover recombination during meiosis ', eLIFE, vol. 4, e10850 . https://doi.org/10.7554/eLife.10850
eLife, Vol 4 (2015)
During meiosis, crossover recombination is essential to link homologous chromosomes and drive faithful chromosome segregation. Crossover recombination is non-random across the genome, and centromere-proximal crossovers are associated with an increase